SlideShare a Scribd company logo
1 of 76
Download to read offline
Network Topology and Graph Theory
EE-304 ENT credits: 4 L{3} P{0} T{1}
Lairenlakpam Joyprakash Singh, PhD
Department of ECE,
North-Eastern Hill University (NEHU),
Shillong – 793 022
jplairen@nehu.ac.in
August 8, 2013
1 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Introduction to Electrical Network Topology
Terms and Definitions
2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Introduction to Electrical Network Topology
Terms and Definitions
Circuit elements
2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Introduction to Electrical Network Topology
Terms and Definitions
Circuit elements
Node
2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Introduction to Electrical Network Topology
Terms and Definitions
Circuit elements
Node
Branch
2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Introduction to Electrical Network Topology
Terms and Definitions
Circuit elements
Node
Branch
Path
2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Introduction to Electrical Network Topology
Terms and Definitions
Circuit elements
Node
Branch
Path
Closed path or Circuit or Loop or Mesh
2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Introduction to Electrical Network Topology
Terms and Definitions
Circuit elements
Node
Branch
Path
Closed path or Circuit or Loop or Mesh
Topology, rather Electrical network topology
2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Introduction to Electrical Network Topology
Terms and Definitions
Circuit elements
Node
Branch
Path
Closed path or Circuit or Loop or Mesh
Topology, rather Electrical network topology
- Graph and its types
2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Introduction to Electrical Network Topology
Terms and Definitions
Circuit elements
Node
Branch
Path
Closed path or Circuit or Loop or Mesh
Topology, rather Electrical network topology
- Graph and its types
Tree
2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Introduction to Electrical Network Topology
Terms and Definitions
Circuit elements
Node
Branch
Path
Closed path or Circuit or Loop or Mesh
Topology, rather Electrical network topology
- Graph and its types
Tree
Twigs
2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Introduction to Electrical Network Topology
Terms and Definitions
Circuit elements
Node
Branch
Path
Closed path or Circuit or Loop or Mesh
Topology, rather Electrical network topology
- Graph and its types
Tree
Twigs
Co-tree
2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Introduction to Electrical Network Topology
Terms and Definitions
Circuit elements
Node
Branch
Path
Closed path or Circuit or Loop or Mesh
Topology, rather Electrical network topology
- Graph and its types
Tree
Twigs
Co-tree
Links or Chords
2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - I
Circuit elements:
3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - I
Circuit elements:
- The mathematical models of a two terminal electrical devices,
3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - I
Circuit elements:
- The mathematical models of a two terminal electrical devices,
- Completely characterized by its voltage-current relationship,
3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - I
Circuit elements:
- The mathematical models of a two terminal electrical devices,
- Completely characterized by its voltage-current relationship,
- Can not be subdivided into other two-terminal devices.
3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - I
Circuit elements:
- The mathematical models of a two terminal electrical devices,
- Completely characterized by its voltage-current relationship,
- Can not be subdivided into other two-terminal devices.
Node:
3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - I
Circuit elements:
- The mathematical models of a two terminal electrical devices,
- Completely characterized by its voltage-current relationship,
- Can not be subdivided into other two-terminal devices.
Node:
- A point at which two or more circuit elements have a common
connection,
3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - I
Circuit elements:
- The mathematical models of a two terminal electrical devices,
- Completely characterized by its voltage-current relationship,
- Can not be subdivided into other two-terminal devices.
Node:
- A point at which two or more circuit elements have a common
connection,
- The number of branches incident to a node is known as the
degree of that node.
3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - I
Circuit elements:
- The mathematical models of a two terminal electrical devices,
- Completely characterized by its voltage-current relationship,
- Can not be subdivided into other two-terminal devices.
Node:
- A point at which two or more circuit elements have a common
connection,
- The number of branches incident to a node is known as the
degree of that node.
Branch:
3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - I
Circuit elements:
- The mathematical models of a two terminal electrical devices,
- Completely characterized by its voltage-current relationship,
- Can not be subdivided into other two-terminal devices.
Node:
- A point at which two or more circuit elements have a common
connection,
- The number of branches incident to a node is known as the
degree of that node.
Branch:
- A single path, containing one circuit element, which connnects
one node to any other node,
3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - I
Circuit elements:
- The mathematical models of a two terminal electrical devices,
- Completely characterized by its voltage-current relationship,
- Can not be subdivided into other two-terminal devices.
Node:
- A point at which two or more circuit elements have a common
connection,
- The number of branches incident to a node is known as the
degree of that node.
Branch:
- A single path, containing one circuit element, which connnects
one node to any other node,
- Represented by a line in the graph.
3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - I
Circuit elements:
- The mathematical models of a two terminal electrical devices,
- Completely characterized by its voltage-current relationship,
- Can not be subdivided into other two-terminal devices.
Node:
- A point at which two or more circuit elements have a common
connection,
- The number of branches incident to a node is known as the
degree of that node.
Branch:
- A single path, containing one circuit element, which connnects
one node to any other node,
- Represented by a line in the graph.
Path:
3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - I
Circuit elements:
- The mathematical models of a two terminal electrical devices,
- Completely characterized by its voltage-current relationship,
- Can not be subdivided into other two-terminal devices.
Node:
- A point at which two or more circuit elements have a common
connection,
- The number of branches incident to a node is known as the
degree of that node.
Branch:
- A single path, containing one circuit element, which connnects
one node to any other node,
- Represented by a line in the graph.
Path:
- A set of elements that may be traversed in order without passing
through the same node twice.
3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
- A path that may be started from a prticular node to other nodes
through branches and comes to the original/starting node,
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
- A path that may be started from a prticular node to other nodes
through branches and comes to the original/starting node,
- Also known as closed path or circuit.
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
- A path that may be started from a prticular node to other nodes
through branches and comes to the original/starting node,
- Also known as closed path or circuit.
Mesh1
[2]:
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
- A path that may be started from a prticular node to other nodes
through branches and comes to the original/starting node,
- Also known as closed path or circuit.
Mesh1
[2]:
- A loop that does not contain any other loops within it,
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
- A path that may be started from a prticular node to other nodes
through branches and comes to the original/starting node,
- Also known as closed path or circuit.
Mesh1
[2]:
- A loop that does not contain any other loops within it,
- Any mesh is a circuit/loop but any loop/circuit may not be a
mesh.
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
- A path that may be started from a prticular node to other nodes
through branches and comes to the original/starting node,
- Also known as closed path or circuit.
Mesh1
[2]:
- A loop that does not contain any other loops within it,
- Any mesh is a circuit/loop but any loop/circuit may not be a
mesh.
Network:
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
- A path that may be started from a prticular node to other nodes
through branches and comes to the original/starting node,
- Also known as closed path or circuit.
Mesh1
[2]:
- A loop that does not contain any other loops within it,
- Any mesh is a circuit/loop but any loop/circuit may not be a
mesh.
Network:
- The interconnection of two or more circuit elements forms an
electical network.
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
- A path that may be started from a prticular node to other nodes
through branches and comes to the original/starting node,
- Also known as closed path or circuit.
Mesh1
[2]:
- A loop that does not contain any other loops within it,
- Any mesh is a circuit/loop but any loop/circuit may not be a
mesh.
Network:
- The interconnection of two or more circuit elements forms an
electical network.
Circuit:
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
- A path that may be started from a prticular node to other nodes
through branches and comes to the original/starting node,
- Also known as closed path or circuit.
Mesh1
[2]:
- A loop that does not contain any other loops within it,
- Any mesh is a circuit/loop but any loop/circuit may not be a
mesh.
Network:
- The interconnection of two or more circuit elements forms an
electical network.
Circuit:
- Network that contains at least one closed path,
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
- A path that may be started from a prticular node to other nodes
through branches and comes to the original/starting node,
- Also known as closed path or circuit.
Mesh1
[2]:
- A loop that does not contain any other loops within it,
- Any mesh is a circuit/loop but any loop/circuit may not be a
mesh.
Network:
- The interconnection of two or more circuit elements forms an
electical network.
Circuit:
- Network that contains at least one closed path,
- Every circuit is a network, but not all networks are circuits.
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
- A path that may be started from a prticular node to other nodes
through branches and comes to the original/starting node,
- Also known as closed path or circuit.
Mesh1
[2]:
- A loop that does not contain any other loops within it,
- Any mesh is a circuit/loop but any loop/circuit may not be a
mesh.
Network:
- The interconnection of two or more circuit elements forms an
electical network.
Circuit:
- Network that contains at least one closed path,
- Every circuit is a network, but not all networks are circuits.
Planar circuit:
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - II
Loop:
- A close path or a closed contour selected in a network/circuit,
- A path that may be started from a prticular node to other nodes
through branches and comes to the original/starting node,
- Also known as closed path or circuit.
Mesh1
[2]:
- A loop that does not contain any other loops within it,
- Any mesh is a circuit/loop but any loop/circuit may not be a
mesh.
Network:
- The interconnection of two or more circuit elements forms an
electical network.
Circuit:
- Network that contains at least one closed path,
- Every circuit is a network, but not all networks are circuits.
Planar circuit:
- A circuit that may drawn on a plane surface in such a way that
no branch passes over or under any other branch.
1Engineering Circuit Analysis, 8e
4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - III
Topology:
5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - III
Topology:
- Deals with properties of networks which are unaffected when the
network is stretched, twisted, or otherwise distorted the size and
the shape,
5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - III
Topology:
- Deals with properties of networks which are unaffected when the
network is stretched, twisted, or otherwise distorted the size and
the shape,
- Not concerned with the particular types of elements appearing in
the circuit, but only with the way in which branches and nodes
are arranged.
5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - III
Topology:
- Deals with properties of networks which are unaffected when the
network is stretched, twisted, or otherwise distorted the size and
the shape,
- Not concerned with the particular types of elements appearing in
the circuit, but only with the way in which branches and nodes
are arranged.
Graph:
5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - III
Topology:
- Deals with properties of networks which are unaffected when the
network is stretched, twisted, or otherwise distorted the size and
the shape,
- Not concerned with the particular types of elements appearing in
the circuit, but only with the way in which branches and nodes
are arranged.
Graph:
- A graph corresponding to a given network is obtained by
replacing all circuit elements with lines.
5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - III
Topology:
- Deals with properties of networks which are unaffected when the
network is stretched, twisted, or otherwise distorted the size and
the shape,
- Not concerned with the particular types of elements appearing in
the circuit, but only with the way in which branches and nodes
are arranged.
Graph:
- A graph corresponding to a given network is obtained by
replacing all circuit elements with lines.
- Connected graph: A graph in which at least one path exists
between any two nodes of the graph. If the network has a
transformer as one of the element, then the resulted graph is
unconnected
5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - III
Topology:
- Deals with properties of networks which are unaffected when the
network is stretched, twisted, or otherwise distorted the size and
the shape,
- Not concerned with the particular types of elements appearing in
the circuit, but only with the way in which branches and nodes
are arranged.
Graph:
- A graph corresponding to a given network is obtained by
replacing all circuit elements with lines.
- Connected graph: A graph in which at least one path exists
between any two nodes of the graph. If the network has a
transformer as one of the element, then the resulted graph is
unconnected
- Directed or Oriented graph: A graph that has all the nodes
and branches numbered and also directions are given to the
branches.
5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - III
Topology:
- Deals with properties of networks which are unaffected when the
network is stretched, twisted, or otherwise distorted the size and
the shape,
- Not concerned with the particular types of elements appearing in
the circuit, but only with the way in which branches and nodes
are arranged.
Graph:
- A graph corresponding to a given network is obtained by
replacing all circuit elements with lines.
- Connected graph: A graph in which at least one path exists
between any two nodes of the graph. If the network has a
transformer as one of the element, then the resulted graph is
unconnected
- Directed or Oriented graph: A graph that has all the nodes
and branches numbered and also directions are given to the
branches.
- Subgraph: The subset of a graph. If the number of nodes and
branches of a subgraph is less than that of the graph, the
subgraph is said to be proper.
5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Network Circuits & Their Graphs
Network Topology: An example
A circuit with topologically equivalent graphs:
1
2
3
4
+
−Vs
Is
R1
IR1
R2
IR2
R3
IR3
C
IC
L
IL
1
2
3
4
1
2
3
4
i) A Circuit ii) its graph iii) directed graph
1
2
3
4
1
2
3
4
1
2
3
4
Three topologically equivalent graphs of figure ii).
6 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Network Circuits & Their Graphs
An Electrical Network & its Graph - I
1 2 3
4
5 A
R1 R2
R4CR3
(a)
1
2
3
4
a b
c
d e f
(b)
Figure 1 : (a) A circuit and (b) its graph.
Note:
The maximum number of branches possible, in a circuit, will be equal
to the number of nodes or vertices.
There are at least two branches in a circuit.
7 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Network Circuits & Their Graphs
An Electrical Network & its Graph - II
1 2 3
4
5 A
R1
IR1
R2
IR2
R4
IR4
C
IC
R3
IR3
(a)
1
2
3
4
a b
c
d e f
(b)
Figure 2 : (a) A circuit and (b) its directed graph.
Note:
Each of the lines of the graph is indicated a reference direction by an
arrow, and the resulted graph is called oriented/directed graph.
8 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Network Circuits & Their Graphs
An Electrical Network & its Graph - III
1
2
3
4
5
+
−Vs
Is
R
R1
I1
R2
I2
R3
I3
C
IC
L
IL
(a)
1
2
3
4
5
a
b c
fe
d
g
(b)
1
2
3
4, 5
a
b c
fed
(c)
Figure 3 : (a) A circuit, (b) its directed graph and (c) simplified directed
graph of (b).
Note:
The active element branch is replaced by its internal resistance to
simplify analysis and computation.
9 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Network Circuits & Their Graphs
An Electrical Network & its Graph - IV
1
2
3
4
+
−Vs
Ivs
R
R1
I1
R2
I2
IIsC
IC
L
IL
(a)
1
2
3
4
a
b c
ed
(b)
1
2
3
4
a
b c
e
d
(c)
Figure 4 : (a) A circuit, and (b),(c) its directed graphs.
Note:
The active elements are excluded from the graph to simplify analysis
and computation.
10 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Network Circuits & Their Graphs
An Electrical Network & its Graph - V
1 A
1 Ω
1 Ω
1 Ω
1 Ω
1 Ω
+−
1 V
(a) (b) (c)
Figure 5 : (a) A circuit, and its- (b) simplified graph and (c) directed
graph.
Note:
When voltage source is not in series with any passive element in the
given network, it is kept in the graph as a branch.
11 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - IV
Tree:
12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - IV
Tree:
- A connected subgraph having all the nodes of a graph without
any loop.
12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - IV
Tree:
- A connected subgraph having all the nodes of a graph without
any loop.
- Thus, a tree is a subgraph that has the following properties:
- It must consist of all nodes of a complete graph.
- For a graph having n number of nodes, the tree of the given graph
will have n − 1 branches.
- There exists one and only one path between any pair of nodes.
- A tree should not have any closed path.
- The rank of a tree is (n − 1). This is also the rank of the graph to
which the tree belongs.
12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - IV
Tree:
- A connected subgraph having all the nodes of a graph without
any loop.
- Thus, a tree is a subgraph that has the following properties:
- It must consist of all nodes of a complete graph.
- For a graph having n number of nodes, the tree of the given graph
will have n − 1 branches.
- There exists one and only one path between any pair of nodes.
- A tree should not have any closed path.
- The rank of a tree is (n − 1). This is also the rank of the graph to
which the tree belongs.
Twigs:
12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - IV
Tree:
- A connected subgraph having all the nodes of a graph without
any loop.
- Thus, a tree is a subgraph that has the following properties:
- It must consist of all nodes of a complete graph.
- For a graph having n number of nodes, the tree of the given graph
will have n − 1 branches.
- There exists one and only one path between any pair of nodes.
- A tree should not have any closed path.
- The rank of a tree is (n − 1). This is also the rank of the graph to
which the tree belongs.
Twigs:
- The branches of a tree are known as twigs,
12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - IV
Tree:
- A connected subgraph having all the nodes of a graph without
any loop.
- Thus, a tree is a subgraph that has the following properties:
- It must consist of all nodes of a complete graph.
- For a graph having n number of nodes, the tree of the given graph
will have n − 1 branches.
- There exists one and only one path between any pair of nodes.
- A tree should not have any closed path.
- The rank of a tree is (n − 1). This is also the rank of the graph to
which the tree belongs.
Twigs:
- The branches of a tree are known as twigs,
Links or Chords:
12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - IV
Tree:
- A connected subgraph having all the nodes of a graph without
any loop.
- Thus, a tree is a subgraph that has the following properties:
- It must consist of all nodes of a complete graph.
- For a graph having n number of nodes, the tree of the given graph
will have n − 1 branches.
- There exists one and only one path between any pair of nodes.
- A tree should not have any closed path.
- The rank of a tree is (n − 1). This is also the rank of the graph to
which the tree belongs.
Twigs:
- The branches of a tree are known as twigs,
Links or Chords:
- The branches that are removed from the graph while forming a
tree are termed as links or chords,
12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - IV
Tree:
- A connected subgraph having all the nodes of a graph without
any loop.
- Thus, a tree is a subgraph that has the following properties:
- It must consist of all nodes of a complete graph.
- For a graph having n number of nodes, the tree of the given graph
will have n − 1 branches.
- There exists one and only one path between any pair of nodes.
- A tree should not have any closed path.
- The rank of a tree is (n − 1). This is also the rank of the graph to
which the tree belongs.
Twigs:
- The branches of a tree are known as twigs,
Links or Chords:
- The branches that are removed from the graph while forming a
tree are termed as links or chords,
- Links are complement of twigs.
12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - IV
Tree:
- A connected subgraph having all the nodes of a graph without
any loop.
- Thus, a tree is a subgraph that has the following properties:
- It must consist of all nodes of a complete graph.
- For a graph having n number of nodes, the tree of the given graph
will have n − 1 branches.
- There exists one and only one path between any pair of nodes.
- A tree should not have any closed path.
- The rank of a tree is (n − 1). This is also the rank of the graph to
which the tree belongs.
Twigs:
- The branches of a tree are known as twigs,
Links or Chords:
- The branches that are removed from the graph while forming a
tree are termed as links or chords,
- Links are complement of twigs.
Co-tree:
12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Network Topology: Terms and Definitions - IV
Tree:
- A connected subgraph having all the nodes of a graph without
any loop.
- Thus, a tree is a subgraph that has the following properties:
- It must consist of all nodes of a complete graph.
- For a graph having n number of nodes, the tree of the given graph
will have n − 1 branches.
- There exists one and only one path between any pair of nodes.
- A tree should not have any closed path.
- The rank of a tree is (n − 1). This is also the rank of the graph to
which the tree belongs.
Twigs:
- The branches of a tree are known as twigs,
Links or Chords:
- The branches that are removed from the graph while forming a
tree are termed as links or chords,
- Links are complement of twigs.
Co-tree:
- The graph constituted with links is known as co-tree.
12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Tree and Cotree
Given a Graph:
1 2 3
4
a b
c d e
f
Tree Twigs of tree Links of cotree
1
2 3
4
a b
c d e
f
{a,b,d} {c,e,f}
1
2 3
4
a b
c d e
f
{a,d,f} {c,b,e}
13 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Summary and a Question:
Q. Does the following graph with branches a and e form a tree?
1
2
3
4
a
b c
fed
14 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Summary and a Question:
Q. Does the following graph with branches a and e form a tree?
1
2
3
4
a
b c
fed
The number of nodes in this subgraph is
equal to that of the given graph.
14 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Terms & Definitions
Summary and a Question:
Q. Does the following graph with branches a and e form a tree?
1
2
3
4
a
b c
fed
The number of nodes in this subgraph is
equal to that of the given graph.
But it has unconnected subgraphs and
moreover total number branches
= n − 1(= 3). Therefore, it is not a tree.
14 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy References
Text Books & References
M. E. Van Valkenburg
Network Analysis, 3/e.
PHI, 2005.
W.H. Hayt, J.E. Kemmerly, S.M. Durbin
Engineering Circuit Analysis, 8/e.
MH, 2012.
15 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy References
Text Books & References
M. E. Van Valkenburg
Network Analysis, 3/e.
PHI, 2005.
W.H. Hayt, J.E. Kemmerly, S.M. Durbin
Engineering Circuit Analysis, 8/e.
MH, 2012.
M. Nahvi, J.A. Edminister
SchuamâĂŹs Outline Electric Circuits, 4/e.
TMH, SIE, 2007.
A. Sudhakar, S.S. Palli
Circuits and Networks: Analysis and Synthesis, 2/e.
TMH, 2002.
15 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Network Toplogy Khublei Shibun!
Thank You!
Any Question?
16 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Home Assignment Graph and Incidence Matrix
Problems for Practice: Graph and Incidence Matrix
1. Classify whether each of the following graphs as planar or
nonplanar.
2. Find the number of possible trees for each graph and draw all
possible trees.
1
2
3
4
(a)
a
b c
d
(b)
1 2
3
4
5
(c)
17 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Home Assignment Graph and Incidence Matrix
Problems for Practice - II
Note: While replacing all elements of the network with lines to form a
graph, we replace active elements by their internal resistances
to simplify analysis and computation.
For example - 1:
1
2
3 4
5
+
−Vs
R1
Is
R2
I1
R3
I2
R4
I3
C
IC
L
IL
Is
(a)
18 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
Home Assignment Graph and Incidence Matrix
Problems for Practice - II
Note: While replacing all elements of the network with lines to form a
graph, we replace active elements by their internal resistances
to simplify analysis and computation.
For example - 1:
1
2
3 4
5
+
−Vs
R1
Is
R2
I1
R3
I2
R4
I3
C
IC
L
IL
Is
(a)
2
3
4
1, 5
(b)
18 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph

More Related Content

What's hot

Chapter 4 mechanical design of transmission lines
Chapter 4  mechanical design of transmission linesChapter 4  mechanical design of transmission lines
Chapter 4 mechanical design of transmission linesfiraoltemesgen1
 
Elements of electrical engineering dc circuits
Elements of electrical engineering dc circuitsElements of electrical engineering dc circuits
Elements of electrical engineering dc circuitsHardik Lathiya
 
Series & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs DevicesSeries & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs Deviceskhemraj298
 
Single phase ac voltage controller
Single phase ac voltage controllerSingle phase ac voltage controller
Single phase ac voltage controllerSwati Tiwari
 
Power electronics Introduction
Power electronics   IntroductionPower electronics   Introduction
Power electronics IntroductionBurdwan University
 
Distribution System Voltage Drop and Power Loss Calculation
Distribution System Voltage Drop and Power Loss CalculationDistribution System Voltage Drop and Power Loss Calculation
Distribution System Voltage Drop and Power Loss CalculationAmeen San
 
File 1 power system fault analysis
File 1 power system fault analysisFile 1 power system fault analysis
File 1 power system fault analysiskirkusawi
 
Capacitance on transmission line
Capacitance on transmission lineCapacitance on transmission line
Capacitance on transmission linevishalgohel12195
 
Dc Choppers
Dc ChoppersDc Choppers
Dc Choppersstooty s
 
Power system fault analysis ppt
Power system fault analysis pptPower system fault analysis ppt
Power system fault analysis pptkarikalan123
 
Symmertical components
Symmertical componentsSymmertical components
Symmertical componentsUday Wankar
 
Three phase inverter - 180 and 120 Degree Mode of Conduction
Three phase inverter - 180 and 120 Degree Mode of ConductionThree phase inverter - 180 and 120 Degree Mode of Conduction
Three phase inverter - 180 and 120 Degree Mode of ConductionMalarselvamV
 
Power Electronics-Introduction
Power Electronics-IntroductionPower Electronics-Introduction
Power Electronics-Introductionsangeetha rakhi
 
Thyristors (2)
Thyristors (2)Thyristors (2)
Thyristors (2)Chethan Sp
 

What's hot (20)

Scr basics
Scr   basicsScr   basics
Scr basics
 
Chapter 4 mechanical design of transmission lines
Chapter 4  mechanical design of transmission linesChapter 4  mechanical design of transmission lines
Chapter 4 mechanical design of transmission lines
 
Fault analysis using z bus
Fault analysis using z busFault analysis using z bus
Fault analysis using z bus
 
Z parameters
Z parametersZ parameters
Z parameters
 
Elements of electrical engineering dc circuits
Elements of electrical engineering dc circuitsElements of electrical engineering dc circuits
Elements of electrical engineering dc circuits
 
Series & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs DevicesSeries & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs Devices
 
Single phase ac voltage controller
Single phase ac voltage controllerSingle phase ac voltage controller
Single phase ac voltage controller
 
Power electronics Introduction
Power electronics   IntroductionPower electronics   Introduction
Power electronics Introduction
 
3 phase ac
3 phase ac3 phase ac
3 phase ac
 
Distribution System Voltage Drop and Power Loss Calculation
Distribution System Voltage Drop and Power Loss CalculationDistribution System Voltage Drop and Power Loss Calculation
Distribution System Voltage Drop and Power Loss Calculation
 
File 1 power system fault analysis
File 1 power system fault analysisFile 1 power system fault analysis
File 1 power system fault analysis
 
Capacitance on transmission line
Capacitance on transmission lineCapacitance on transmission line
Capacitance on transmission line
 
Dc Choppers
Dc ChoppersDc Choppers
Dc Choppers
 
Power system fault analysis ppt
Power system fault analysis pptPower system fault analysis ppt
Power system fault analysis ppt
 
PUT (industrial electronic)
PUT (industrial electronic)PUT (industrial electronic)
PUT (industrial electronic)
 
Symmertical components
Symmertical componentsSymmertical components
Symmertical components
 
Three phase inverter - 180 and 120 Degree Mode of Conduction
Three phase inverter - 180 and 120 Degree Mode of ConductionThree phase inverter - 180 and 120 Degree Mode of Conduction
Three phase inverter - 180 and 120 Degree Mode of Conduction
 
Resonant circuits
Resonant circuitsResonant circuits
Resonant circuits
 
Power Electronics-Introduction
Power Electronics-IntroductionPower Electronics-Introduction
Power Electronics-Introduction
 
Thyristors (2)
Thyristors (2)Thyristors (2)
Thyristors (2)
 

Viewers also liked

Circuit laws & network theorems
Circuit laws  & network theoremsCircuit laws  & network theorems
Circuit laws & network theoremsHimanshu Batra
 
Network theorems for electrical engineering
Network theorems for electrical engineeringNetwork theorems for electrical engineering
Network theorems for electrical engineeringKamil Hussain
 
Tecnologia nas escolas thabata e verônica
Tecnologia nas escolas thabata e verônicaTecnologia nas escolas thabata e verônica
Tecnologia nas escolas thabata e verônicaVeronica Rosario
 
Graph theory[1]
Graph theory[1]Graph theory[1]
Graph theory[1]sethamit
 
International Journal of Analysis of Electrical Machines (Vol 2 Issue 2)
International Journal of Analysis of Electrical Machines (Vol 2 Issue 2)International Journal of Analysis of Electrical Machines (Vol 2 Issue 2)
International Journal of Analysis of Electrical Machines (Vol 2 Issue 2)JournalsPub www.journalspub.com
 
IEEE PRESENTATION ON WIRELESS PILGRIM TRACKING
IEEE PRESENTATION ON WIRELESS PILGRIM TRACKINGIEEE PRESENTATION ON WIRELESS PILGRIM TRACKING
IEEE PRESENTATION ON WIRELESS PILGRIM TRACKINGSOUMYA PANDA
 
DC Network Theory - Basic Electrical Engineering
DC Network Theory - Basic Electrical EngineeringDC Network Theory - Basic Electrical Engineering
DC Network Theory - Basic Electrical EngineeringParamjeet Singh Jamwal
 
A Perspective on Graph Theory and Network Science
A Perspective on Graph Theory and Network ScienceA Perspective on Graph Theory and Network Science
A Perspective on Graph Theory and Network ScienceMarko Rodriguez
 
Fundamentals of Electric Drives - Electric Drives
Fundamentals of Electric Drives - Electric DrivesFundamentals of Electric Drives - Electric Drives
Fundamentals of Electric Drives - Electric DrivesParamjeet Singh Jamwal
 
Network analysis and synthesis question and answer...
Network analysis and synthesis question and answer...Network analysis and synthesis question and answer...
Network analysis and synthesis question and answer...Manash Deka
 
Two port networks (y parameters)
Two port networks (y parameters)Two port networks (y parameters)
Two port networks (y parameters)bhupendra kumar
 
Superposition theorem
Superposition theoremSuperposition theorem
Superposition theoremyash patel
 
CS6702 graph theory and applications notes pdf book
CS6702 graph theory and applications notes pdf bookCS6702 graph theory and applications notes pdf book
CS6702 graph theory and applications notes pdf bookappasami
 

Viewers also liked (20)

Circuit laws & network theorems
Circuit laws  & network theoremsCircuit laws  & network theorems
Circuit laws & network theorems
 
Network Theorems.ppt
Network Theorems.pptNetwork Theorems.ppt
Network Theorems.ppt
 
Network theorems for electrical engineering
Network theorems for electrical engineeringNetwork theorems for electrical engineering
Network theorems for electrical engineering
 
Introduction to Graph Theory
Introduction to Graph TheoryIntroduction to Graph Theory
Introduction to Graph Theory
 
Tecnologia nas escolas thabata e verônica
Tecnologia nas escolas thabata e verônicaTecnologia nas escolas thabata e verônica
Tecnologia nas escolas thabata e verônica
 
Graph theory[1]
Graph theory[1]Graph theory[1]
Graph theory[1]
 
International Journal of Analysis of Electrical Machines (Vol 2 Issue 2)
International Journal of Analysis of Electrical Machines (Vol 2 Issue 2)International Journal of Analysis of Electrical Machines (Vol 2 Issue 2)
International Journal of Analysis of Electrical Machines (Vol 2 Issue 2)
 
List of subjects for e learning digital library
List of subjects for e learning  digital libraryList of subjects for e learning  digital library
List of subjects for e learning digital library
 
IEEE PRESENTATION ON WIRELESS PILGRIM TRACKING
IEEE PRESENTATION ON WIRELESS PILGRIM TRACKINGIEEE PRESENTATION ON WIRELESS PILGRIM TRACKING
IEEE PRESENTATION ON WIRELESS PILGRIM TRACKING
 
DC Network Theory - Basic Electrical Engineering
DC Network Theory - Basic Electrical EngineeringDC Network Theory - Basic Electrical Engineering
DC Network Theory - Basic Electrical Engineering
 
A Perspective on Graph Theory and Network Science
A Perspective on Graph Theory and Network ScienceA Perspective on Graph Theory and Network Science
A Perspective on Graph Theory and Network Science
 
Graph theory
Graph theoryGraph theory
Graph theory
 
Graph theory
Graph theoryGraph theory
Graph theory
 
Fundamentals of Electric Drives - Electric Drives
Fundamentals of Electric Drives - Electric DrivesFundamentals of Electric Drives - Electric Drives
Fundamentals of Electric Drives - Electric Drives
 
Network analysis and synthesis question and answer...
Network analysis and synthesis question and answer...Network analysis and synthesis question and answer...
Network analysis and synthesis question and answer...
 
superposition theorem
superposition theoremsuperposition theorem
superposition theorem
 
Two port networks (y parameters)
Two port networks (y parameters)Two port networks (y parameters)
Two port networks (y parameters)
 
Superposition theorem
Superposition theoremSuperposition theorem
Superposition theorem
 
Superposition theorem
Superposition theoremSuperposition theorem
Superposition theorem
 
CS6702 graph theory and applications notes pdf book
CS6702 graph theory and applications notes pdf bookCS6702 graph theory and applications notes pdf book
CS6702 graph theory and applications notes pdf book
 

Similar to EE-304 Electrical Network Theory [Class Notes1] - 2013

Similar to EE-304 Electrical Network Theory [Class Notes1] - 2013 (20)

Elec3908 lect 3
Elec3908 lect 3Elec3908 lect 3
Elec3908 lect 3
 
Unit 1 graph theory
Unit 1 graph theoryUnit 1 graph theory
Unit 1 graph theory
 
Introduction to Network Analysis
Introduction to Network AnalysisIntroduction to Network Analysis
Introduction to Network Analysis
 
ECE203 Lecture 2
ECE203 Lecture 2ECE203 Lecture 2
ECE203 Lecture 2
 
Syllabus
SyllabusSyllabus
Syllabus
 
BE UNIT 2 PPT.ppt
BE UNIT 2 PPT.pptBE UNIT 2 PPT.ppt
BE UNIT 2 PPT.ppt
 
EDC Notes Part 1 by S S Kiran
EDC Notes Part 1 by S S KiranEDC Notes Part 1 by S S Kiran
EDC Notes Part 1 by S S Kiran
 
POLYTECHNIC DIPLOMA.pdf
POLYTECHNIC DIPLOMA.pdfPOLYTECHNIC DIPLOMA.pdf
POLYTECHNIC DIPLOMA.pdf
 
ECE203 Lecture 3,4
ECE203 Lecture 3,4 ECE203 Lecture 3,4
ECE203 Lecture 3,4
 
ele-02
ele-02ele-02
ele-02
 
Bee unit 1
Bee unit 1Bee unit 1
Bee unit 1
 
Lecture 1 bee
Lecture 1 beeLecture 1 bee
Lecture 1 bee
 
mc circuit.pptx
mc circuit.pptxmc circuit.pptx
mc circuit.pptx
 
05617901
0561790105617901
05617901
 
MOSFET....complete PPT
MOSFET....complete PPTMOSFET....complete PPT
MOSFET....complete PPT
 
18EC33_Network_Theory_PPTs.pdf
18EC33_Network_Theory_PPTs.pdf18EC33_Network_Theory_PPTs.pdf
18EC33_Network_Theory_PPTs.pdf
 
Circuit Theory: Nodes, Branches and Loops of a Circuit
Circuit Theory: Nodes, Branches and Loops of a CircuitCircuit Theory: Nodes, Branches and Loops of a Circuit
Circuit Theory: Nodes, Branches and Loops of a Circuit
 
ece-04
ece-04ece-04
ece-04
 
Ece 04
Ece 04Ece 04
Ece 04
 
R18_B-TECH_ECE_SYLLABUS.pdf
R18_B-TECH_ECE_SYLLABUS.pdfR18_B-TECH_ECE_SYLLABUS.pdf
R18_B-TECH_ECE_SYLLABUS.pdf
 

Recently uploaded

How to Analyse Profit of a Sales Order in Odoo 17
How to Analyse Profit of a Sales Order in Odoo 17How to Analyse Profit of a Sales Order in Odoo 17
How to Analyse Profit of a Sales Order in Odoo 17Celine George
 
II BIOSENSOR PRINCIPLE APPLICATIONS AND WORKING II
II BIOSENSOR PRINCIPLE APPLICATIONS AND WORKING IIII BIOSENSOR PRINCIPLE APPLICATIONS AND WORKING II
II BIOSENSOR PRINCIPLE APPLICATIONS AND WORKING IIagpharmacy11
 
Graduate Outcomes Presentation Slides - English (v3).pptx
Graduate Outcomes Presentation Slides - English (v3).pptxGraduate Outcomes Presentation Slides - English (v3).pptx
Graduate Outcomes Presentation Slides - English (v3).pptxneillewis46
 
PSYPACT- Practicing Over State Lines May 2024.pptx
PSYPACT- Practicing Over State Lines May 2024.pptxPSYPACT- Practicing Over State Lines May 2024.pptx
PSYPACT- Practicing Over State Lines May 2024.pptxMarlene Maheu
 
The basics of sentences session 4pptx.pptx
The basics of sentences session 4pptx.pptxThe basics of sentences session 4pptx.pptx
The basics of sentences session 4pptx.pptxheathfieldcps1
 
24 ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH SỞ GIÁO DỤC HẢI DƯ...
24 ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH SỞ GIÁO DỤC HẢI DƯ...24 ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH SỞ GIÁO DỤC HẢI DƯ...
24 ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH SỞ GIÁO DỤC HẢI DƯ...Nguyen Thanh Tu Collection
 
Capitol Tech Univ Doctoral Presentation -May 2024
Capitol Tech Univ Doctoral Presentation -May 2024Capitol Tech Univ Doctoral Presentation -May 2024
Capitol Tech Univ Doctoral Presentation -May 2024CapitolTechU
 
Envelope of Discrepancy in Orthodontics: Enhancing Precision in Treatment
 Envelope of Discrepancy in Orthodontics: Enhancing Precision in Treatment Envelope of Discrepancy in Orthodontics: Enhancing Precision in Treatment
Envelope of Discrepancy in Orthodontics: Enhancing Precision in Treatmentsaipooja36
 
Sternal Fractures & Dislocations - EMGuidewire Radiology Reading Room
Sternal Fractures & Dislocations - EMGuidewire Radiology Reading RoomSternal Fractures & Dislocations - EMGuidewire Radiology Reading Room
Sternal Fractures & Dislocations - EMGuidewire Radiology Reading RoomSean M. Fox
 
MOOD STABLIZERS DRUGS.pptx
MOOD     STABLIZERS           DRUGS.pptxMOOD     STABLIZERS           DRUGS.pptx
MOOD STABLIZERS DRUGS.pptxPoojaSen20
 
The Ball Poem- John Berryman_20240518_001617_0000.pptx
The Ball Poem- John Berryman_20240518_001617_0000.pptxThe Ball Poem- John Berryman_20240518_001617_0000.pptx
The Ball Poem- John Berryman_20240518_001617_0000.pptxNehaChandwani11
 
An Overview of the Odoo 17 Knowledge App
An Overview of the Odoo 17 Knowledge AppAn Overview of the Odoo 17 Knowledge App
An Overview of the Odoo 17 Knowledge AppCeline George
 
Implanted Devices - VP Shunts: EMGuidewire's Radiology Reading Room
Implanted Devices - VP Shunts: EMGuidewire's Radiology Reading RoomImplanted Devices - VP Shunts: EMGuidewire's Radiology Reading Room
Implanted Devices - VP Shunts: EMGuidewire's Radiology Reading RoomSean M. Fox
 
ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH FORM 50 CÂU TRẮC NGHI...
ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH FORM 50 CÂU TRẮC NGHI...ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH FORM 50 CÂU TRẮC NGHI...
ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH FORM 50 CÂU TRẮC NGHI...Nguyen Thanh Tu Collection
 
SURVEY I created for uni project research
SURVEY I created for uni project researchSURVEY I created for uni project research
SURVEY I created for uni project researchCaitlinCummins3
 
How To Create Editable Tree View in Odoo 17
How To Create Editable Tree View in Odoo 17How To Create Editable Tree View in Odoo 17
How To Create Editable Tree View in Odoo 17Celine George
 
ANTI PARKISON DRUGS.pptx
ANTI         PARKISON          DRUGS.pptxANTI         PARKISON          DRUGS.pptx
ANTI PARKISON DRUGS.pptxPoojaSen20
 

Recently uploaded (20)

How to Analyse Profit of a Sales Order in Odoo 17
How to Analyse Profit of a Sales Order in Odoo 17How to Analyse Profit of a Sales Order in Odoo 17
How to Analyse Profit of a Sales Order in Odoo 17
 
II BIOSENSOR PRINCIPLE APPLICATIONS AND WORKING II
II BIOSENSOR PRINCIPLE APPLICATIONS AND WORKING IIII BIOSENSOR PRINCIPLE APPLICATIONS AND WORKING II
II BIOSENSOR PRINCIPLE APPLICATIONS AND WORKING II
 
Mattingly "AI and Prompt Design: LLMs with Text Classification and Open Source"
Mattingly "AI and Prompt Design: LLMs with Text Classification and Open Source"Mattingly "AI and Prompt Design: LLMs with Text Classification and Open Source"
Mattingly "AI and Prompt Design: LLMs with Text Classification and Open Source"
 
Graduate Outcomes Presentation Slides - English (v3).pptx
Graduate Outcomes Presentation Slides - English (v3).pptxGraduate Outcomes Presentation Slides - English (v3).pptx
Graduate Outcomes Presentation Slides - English (v3).pptx
 
PSYPACT- Practicing Over State Lines May 2024.pptx
PSYPACT- Practicing Over State Lines May 2024.pptxPSYPACT- Practicing Over State Lines May 2024.pptx
PSYPACT- Practicing Over State Lines May 2024.pptx
 
The basics of sentences session 4pptx.pptx
The basics of sentences session 4pptx.pptxThe basics of sentences session 4pptx.pptx
The basics of sentences session 4pptx.pptx
 
24 ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH SỞ GIÁO DỤC HẢI DƯ...
24 ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH SỞ GIÁO DỤC HẢI DƯ...24 ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH SỞ GIÁO DỤC HẢI DƯ...
24 ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH SỞ GIÁO DỤC HẢI DƯ...
 
Capitol Tech Univ Doctoral Presentation -May 2024
Capitol Tech Univ Doctoral Presentation -May 2024Capitol Tech Univ Doctoral Presentation -May 2024
Capitol Tech Univ Doctoral Presentation -May 2024
 
Word Stress rules esl .pptx
Word Stress rules esl               .pptxWord Stress rules esl               .pptx
Word Stress rules esl .pptx
 
Envelope of Discrepancy in Orthodontics: Enhancing Precision in Treatment
 Envelope of Discrepancy in Orthodontics: Enhancing Precision in Treatment Envelope of Discrepancy in Orthodontics: Enhancing Precision in Treatment
Envelope of Discrepancy in Orthodontics: Enhancing Precision in Treatment
 
Sternal Fractures & Dislocations - EMGuidewire Radiology Reading Room
Sternal Fractures & Dislocations - EMGuidewire Radiology Reading RoomSternal Fractures & Dislocations - EMGuidewire Radiology Reading Room
Sternal Fractures & Dislocations - EMGuidewire Radiology Reading Room
 
MOOD STABLIZERS DRUGS.pptx
MOOD     STABLIZERS           DRUGS.pptxMOOD     STABLIZERS           DRUGS.pptx
MOOD STABLIZERS DRUGS.pptx
 
The Ball Poem- John Berryman_20240518_001617_0000.pptx
The Ball Poem- John Berryman_20240518_001617_0000.pptxThe Ball Poem- John Berryman_20240518_001617_0000.pptx
The Ball Poem- John Berryman_20240518_001617_0000.pptx
 
An Overview of the Odoo 17 Knowledge App
An Overview of the Odoo 17 Knowledge AppAn Overview of the Odoo 17 Knowledge App
An Overview of the Odoo 17 Knowledge App
 
Implanted Devices - VP Shunts: EMGuidewire's Radiology Reading Room
Implanted Devices - VP Shunts: EMGuidewire's Radiology Reading RoomImplanted Devices - VP Shunts: EMGuidewire's Radiology Reading Room
Implanted Devices - VP Shunts: EMGuidewire's Radiology Reading Room
 
ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH FORM 50 CÂU TRẮC NGHI...
ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH FORM 50 CÂU TRẮC NGHI...ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH FORM 50 CÂU TRẮC NGHI...
ĐỀ THAM KHẢO KÌ THI TUYỂN SINH VÀO LỚP 10 MÔN TIẾNG ANH FORM 50 CÂU TRẮC NGHI...
 
SURVEY I created for uni project research
SURVEY I created for uni project researchSURVEY I created for uni project research
SURVEY I created for uni project research
 
How To Create Editable Tree View in Odoo 17
How To Create Editable Tree View in Odoo 17How To Create Editable Tree View in Odoo 17
How To Create Editable Tree View in Odoo 17
 
ANTI PARKISON DRUGS.pptx
ANTI         PARKISON          DRUGS.pptxANTI         PARKISON          DRUGS.pptx
ANTI PARKISON DRUGS.pptx
 
IPL Online Quiz by Pragya; Question Set.
IPL Online Quiz by Pragya; Question Set.IPL Online Quiz by Pragya; Question Set.
IPL Online Quiz by Pragya; Question Set.
 

EE-304 Electrical Network Theory [Class Notes1] - 2013

  • 1. Network Topology and Graph Theory EE-304 ENT credits: 4 L{3} P{0} T{1} Lairenlakpam Joyprakash Singh, PhD Department of ECE, North-Eastern Hill University (NEHU), Shillong – 793 022 jplairen@nehu.ac.in August 8, 2013 1 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 2. Network Toplogy Terms & Definitions Introduction to Electrical Network Topology Terms and Definitions 2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 3. Network Toplogy Terms & Definitions Introduction to Electrical Network Topology Terms and Definitions Circuit elements 2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 4. Network Toplogy Terms & Definitions Introduction to Electrical Network Topology Terms and Definitions Circuit elements Node 2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 5. Network Toplogy Terms & Definitions Introduction to Electrical Network Topology Terms and Definitions Circuit elements Node Branch 2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 6. Network Toplogy Terms & Definitions Introduction to Electrical Network Topology Terms and Definitions Circuit elements Node Branch Path 2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 7. Network Toplogy Terms & Definitions Introduction to Electrical Network Topology Terms and Definitions Circuit elements Node Branch Path Closed path or Circuit or Loop or Mesh 2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 8. Network Toplogy Terms & Definitions Introduction to Electrical Network Topology Terms and Definitions Circuit elements Node Branch Path Closed path or Circuit or Loop or Mesh Topology, rather Electrical network topology 2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 9. Network Toplogy Terms & Definitions Introduction to Electrical Network Topology Terms and Definitions Circuit elements Node Branch Path Closed path or Circuit or Loop or Mesh Topology, rather Electrical network topology - Graph and its types 2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 10. Network Toplogy Terms & Definitions Introduction to Electrical Network Topology Terms and Definitions Circuit elements Node Branch Path Closed path or Circuit or Loop or Mesh Topology, rather Electrical network topology - Graph and its types Tree 2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 11. Network Toplogy Terms & Definitions Introduction to Electrical Network Topology Terms and Definitions Circuit elements Node Branch Path Closed path or Circuit or Loop or Mesh Topology, rather Electrical network topology - Graph and its types Tree Twigs 2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 12. Network Toplogy Terms & Definitions Introduction to Electrical Network Topology Terms and Definitions Circuit elements Node Branch Path Closed path or Circuit or Loop or Mesh Topology, rather Electrical network topology - Graph and its types Tree Twigs Co-tree 2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 13. Network Toplogy Terms & Definitions Introduction to Electrical Network Topology Terms and Definitions Circuit elements Node Branch Path Closed path or Circuit or Loop or Mesh Topology, rather Electrical network topology - Graph and its types Tree Twigs Co-tree Links or Chords 2 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 14. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - I Circuit elements: 3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 15. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - I Circuit elements: - The mathematical models of a two terminal electrical devices, 3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 16. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - I Circuit elements: - The mathematical models of a two terminal electrical devices, - Completely characterized by its voltage-current relationship, 3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 17. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - I Circuit elements: - The mathematical models of a two terminal electrical devices, - Completely characterized by its voltage-current relationship, - Can not be subdivided into other two-terminal devices. 3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 18. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - I Circuit elements: - The mathematical models of a two terminal electrical devices, - Completely characterized by its voltage-current relationship, - Can not be subdivided into other two-terminal devices. Node: 3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 19. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - I Circuit elements: - The mathematical models of a two terminal electrical devices, - Completely characterized by its voltage-current relationship, - Can not be subdivided into other two-terminal devices. Node: - A point at which two or more circuit elements have a common connection, 3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 20. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - I Circuit elements: - The mathematical models of a two terminal electrical devices, - Completely characterized by its voltage-current relationship, - Can not be subdivided into other two-terminal devices. Node: - A point at which two or more circuit elements have a common connection, - The number of branches incident to a node is known as the degree of that node. 3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 21. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - I Circuit elements: - The mathematical models of a two terminal electrical devices, - Completely characterized by its voltage-current relationship, - Can not be subdivided into other two-terminal devices. Node: - A point at which two or more circuit elements have a common connection, - The number of branches incident to a node is known as the degree of that node. Branch: 3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 22. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - I Circuit elements: - The mathematical models of a two terminal electrical devices, - Completely characterized by its voltage-current relationship, - Can not be subdivided into other two-terminal devices. Node: - A point at which two or more circuit elements have a common connection, - The number of branches incident to a node is known as the degree of that node. Branch: - A single path, containing one circuit element, which connnects one node to any other node, 3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 23. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - I Circuit elements: - The mathematical models of a two terminal electrical devices, - Completely characterized by its voltage-current relationship, - Can not be subdivided into other two-terminal devices. Node: - A point at which two or more circuit elements have a common connection, - The number of branches incident to a node is known as the degree of that node. Branch: - A single path, containing one circuit element, which connnects one node to any other node, - Represented by a line in the graph. 3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 24. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - I Circuit elements: - The mathematical models of a two terminal electrical devices, - Completely characterized by its voltage-current relationship, - Can not be subdivided into other two-terminal devices. Node: - A point at which two or more circuit elements have a common connection, - The number of branches incident to a node is known as the degree of that node. Branch: - A single path, containing one circuit element, which connnects one node to any other node, - Represented by a line in the graph. Path: 3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 25. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - I Circuit elements: - The mathematical models of a two terminal electrical devices, - Completely characterized by its voltage-current relationship, - Can not be subdivided into other two-terminal devices. Node: - A point at which two or more circuit elements have a common connection, - The number of branches incident to a node is known as the degree of that node. Branch: - A single path, containing one circuit element, which connnects one node to any other node, - Represented by a line in the graph. Path: - A set of elements that may be traversed in order without passing through the same node twice. 3 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 26. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 27. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 28. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, - A path that may be started from a prticular node to other nodes through branches and comes to the original/starting node, 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 29. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, - A path that may be started from a prticular node to other nodes through branches and comes to the original/starting node, - Also known as closed path or circuit. 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 30. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, - A path that may be started from a prticular node to other nodes through branches and comes to the original/starting node, - Also known as closed path or circuit. Mesh1 [2]: 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 31. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, - A path that may be started from a prticular node to other nodes through branches and comes to the original/starting node, - Also known as closed path or circuit. Mesh1 [2]: - A loop that does not contain any other loops within it, 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 32. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, - A path that may be started from a prticular node to other nodes through branches and comes to the original/starting node, - Also known as closed path or circuit. Mesh1 [2]: - A loop that does not contain any other loops within it, - Any mesh is a circuit/loop but any loop/circuit may not be a mesh. 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 33. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, - A path that may be started from a prticular node to other nodes through branches and comes to the original/starting node, - Also known as closed path or circuit. Mesh1 [2]: - A loop that does not contain any other loops within it, - Any mesh is a circuit/loop but any loop/circuit may not be a mesh. Network: 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 34. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, - A path that may be started from a prticular node to other nodes through branches and comes to the original/starting node, - Also known as closed path or circuit. Mesh1 [2]: - A loop that does not contain any other loops within it, - Any mesh is a circuit/loop but any loop/circuit may not be a mesh. Network: - The interconnection of two or more circuit elements forms an electical network. 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 35. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, - A path that may be started from a prticular node to other nodes through branches and comes to the original/starting node, - Also known as closed path or circuit. Mesh1 [2]: - A loop that does not contain any other loops within it, - Any mesh is a circuit/loop but any loop/circuit may not be a mesh. Network: - The interconnection of two or more circuit elements forms an electical network. Circuit: 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 36. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, - A path that may be started from a prticular node to other nodes through branches and comes to the original/starting node, - Also known as closed path or circuit. Mesh1 [2]: - A loop that does not contain any other loops within it, - Any mesh is a circuit/loop but any loop/circuit may not be a mesh. Network: - The interconnection of two or more circuit elements forms an electical network. Circuit: - Network that contains at least one closed path, 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 37. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, - A path that may be started from a prticular node to other nodes through branches and comes to the original/starting node, - Also known as closed path or circuit. Mesh1 [2]: - A loop that does not contain any other loops within it, - Any mesh is a circuit/loop but any loop/circuit may not be a mesh. Network: - The interconnection of two or more circuit elements forms an electical network. Circuit: - Network that contains at least one closed path, - Every circuit is a network, but not all networks are circuits. 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 38. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, - A path that may be started from a prticular node to other nodes through branches and comes to the original/starting node, - Also known as closed path or circuit. Mesh1 [2]: - A loop that does not contain any other loops within it, - Any mesh is a circuit/loop but any loop/circuit may not be a mesh. Network: - The interconnection of two or more circuit elements forms an electical network. Circuit: - Network that contains at least one closed path, - Every circuit is a network, but not all networks are circuits. Planar circuit: 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 39. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - II Loop: - A close path or a closed contour selected in a network/circuit, - A path that may be started from a prticular node to other nodes through branches and comes to the original/starting node, - Also known as closed path or circuit. Mesh1 [2]: - A loop that does not contain any other loops within it, - Any mesh is a circuit/loop but any loop/circuit may not be a mesh. Network: - The interconnection of two or more circuit elements forms an electical network. Circuit: - Network that contains at least one closed path, - Every circuit is a network, but not all networks are circuits. Planar circuit: - A circuit that may drawn on a plane surface in such a way that no branch passes over or under any other branch. 1Engineering Circuit Analysis, 8e 4 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 40. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - III Topology: 5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 41. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - III Topology: - Deals with properties of networks which are unaffected when the network is stretched, twisted, or otherwise distorted the size and the shape, 5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 42. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - III Topology: - Deals with properties of networks which are unaffected when the network is stretched, twisted, or otherwise distorted the size and the shape, - Not concerned with the particular types of elements appearing in the circuit, but only with the way in which branches and nodes are arranged. 5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 43. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - III Topology: - Deals with properties of networks which are unaffected when the network is stretched, twisted, or otherwise distorted the size and the shape, - Not concerned with the particular types of elements appearing in the circuit, but only with the way in which branches and nodes are arranged. Graph: 5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 44. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - III Topology: - Deals with properties of networks which are unaffected when the network is stretched, twisted, or otherwise distorted the size and the shape, - Not concerned with the particular types of elements appearing in the circuit, but only with the way in which branches and nodes are arranged. Graph: - A graph corresponding to a given network is obtained by replacing all circuit elements with lines. 5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 45. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - III Topology: - Deals with properties of networks which are unaffected when the network is stretched, twisted, or otherwise distorted the size and the shape, - Not concerned with the particular types of elements appearing in the circuit, but only with the way in which branches and nodes are arranged. Graph: - A graph corresponding to a given network is obtained by replacing all circuit elements with lines. - Connected graph: A graph in which at least one path exists between any two nodes of the graph. If the network has a transformer as one of the element, then the resulted graph is unconnected 5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 46. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - III Topology: - Deals with properties of networks which are unaffected when the network is stretched, twisted, or otherwise distorted the size and the shape, - Not concerned with the particular types of elements appearing in the circuit, but only with the way in which branches and nodes are arranged. Graph: - A graph corresponding to a given network is obtained by replacing all circuit elements with lines. - Connected graph: A graph in which at least one path exists between any two nodes of the graph. If the network has a transformer as one of the element, then the resulted graph is unconnected - Directed or Oriented graph: A graph that has all the nodes and branches numbered and also directions are given to the branches. 5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 47. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - III Topology: - Deals with properties of networks which are unaffected when the network is stretched, twisted, or otherwise distorted the size and the shape, - Not concerned with the particular types of elements appearing in the circuit, but only with the way in which branches and nodes are arranged. Graph: - A graph corresponding to a given network is obtained by replacing all circuit elements with lines. - Connected graph: A graph in which at least one path exists between any two nodes of the graph. If the network has a transformer as one of the element, then the resulted graph is unconnected - Directed or Oriented graph: A graph that has all the nodes and branches numbered and also directions are given to the branches. - Subgraph: The subset of a graph. If the number of nodes and branches of a subgraph is less than that of the graph, the subgraph is said to be proper. 5 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 48. Network Toplogy Network Circuits & Their Graphs Network Topology: An example A circuit with topologically equivalent graphs: 1 2 3 4 + −Vs Is R1 IR1 R2 IR2 R3 IR3 C IC L IL 1 2 3 4 1 2 3 4 i) A Circuit ii) its graph iii) directed graph 1 2 3 4 1 2 3 4 1 2 3 4 Three topologically equivalent graphs of figure ii). 6 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 49. Network Toplogy Network Circuits & Their Graphs An Electrical Network & its Graph - I 1 2 3 4 5 A R1 R2 R4CR3 (a) 1 2 3 4 a b c d e f (b) Figure 1 : (a) A circuit and (b) its graph. Note: The maximum number of branches possible, in a circuit, will be equal to the number of nodes or vertices. There are at least two branches in a circuit. 7 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 50. Network Toplogy Network Circuits & Their Graphs An Electrical Network & its Graph - II 1 2 3 4 5 A R1 IR1 R2 IR2 R4 IR4 C IC R3 IR3 (a) 1 2 3 4 a b c d e f (b) Figure 2 : (a) A circuit and (b) its directed graph. Note: Each of the lines of the graph is indicated a reference direction by an arrow, and the resulted graph is called oriented/directed graph. 8 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 51. Network Toplogy Network Circuits & Their Graphs An Electrical Network & its Graph - III 1 2 3 4 5 + −Vs Is R R1 I1 R2 I2 R3 I3 C IC L IL (a) 1 2 3 4 5 a b c fe d g (b) 1 2 3 4, 5 a b c fed (c) Figure 3 : (a) A circuit, (b) its directed graph and (c) simplified directed graph of (b). Note: The active element branch is replaced by its internal resistance to simplify analysis and computation. 9 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 52. Network Toplogy Network Circuits & Their Graphs An Electrical Network & its Graph - IV 1 2 3 4 + −Vs Ivs R R1 I1 R2 I2 IIsC IC L IL (a) 1 2 3 4 a b c ed (b) 1 2 3 4 a b c e d (c) Figure 4 : (a) A circuit, and (b),(c) its directed graphs. Note: The active elements are excluded from the graph to simplify analysis and computation. 10 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 53. Network Toplogy Network Circuits & Their Graphs An Electrical Network & its Graph - V 1 A 1 Ω 1 Ω 1 Ω 1 Ω 1 Ω +− 1 V (a) (b) (c) Figure 5 : (a) A circuit, and its- (b) simplified graph and (c) directed graph. Note: When voltage source is not in series with any passive element in the given network, it is kept in the graph as a branch. 11 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 54. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - IV Tree: 12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 55. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - IV Tree: - A connected subgraph having all the nodes of a graph without any loop. 12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 56. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - IV Tree: - A connected subgraph having all the nodes of a graph without any loop. - Thus, a tree is a subgraph that has the following properties: - It must consist of all nodes of a complete graph. - For a graph having n number of nodes, the tree of the given graph will have n − 1 branches. - There exists one and only one path between any pair of nodes. - A tree should not have any closed path. - The rank of a tree is (n − 1). This is also the rank of the graph to which the tree belongs. 12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 57. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - IV Tree: - A connected subgraph having all the nodes of a graph without any loop. - Thus, a tree is a subgraph that has the following properties: - It must consist of all nodes of a complete graph. - For a graph having n number of nodes, the tree of the given graph will have n − 1 branches. - There exists one and only one path between any pair of nodes. - A tree should not have any closed path. - The rank of a tree is (n − 1). This is also the rank of the graph to which the tree belongs. Twigs: 12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 58. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - IV Tree: - A connected subgraph having all the nodes of a graph without any loop. - Thus, a tree is a subgraph that has the following properties: - It must consist of all nodes of a complete graph. - For a graph having n number of nodes, the tree of the given graph will have n − 1 branches. - There exists one and only one path between any pair of nodes. - A tree should not have any closed path. - The rank of a tree is (n − 1). This is also the rank of the graph to which the tree belongs. Twigs: - The branches of a tree are known as twigs, 12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 59. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - IV Tree: - A connected subgraph having all the nodes of a graph without any loop. - Thus, a tree is a subgraph that has the following properties: - It must consist of all nodes of a complete graph. - For a graph having n number of nodes, the tree of the given graph will have n − 1 branches. - There exists one and only one path between any pair of nodes. - A tree should not have any closed path. - The rank of a tree is (n − 1). This is also the rank of the graph to which the tree belongs. Twigs: - The branches of a tree are known as twigs, Links or Chords: 12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 60. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - IV Tree: - A connected subgraph having all the nodes of a graph without any loop. - Thus, a tree is a subgraph that has the following properties: - It must consist of all nodes of a complete graph. - For a graph having n number of nodes, the tree of the given graph will have n − 1 branches. - There exists one and only one path between any pair of nodes. - A tree should not have any closed path. - The rank of a tree is (n − 1). This is also the rank of the graph to which the tree belongs. Twigs: - The branches of a tree are known as twigs, Links or Chords: - The branches that are removed from the graph while forming a tree are termed as links or chords, 12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 61. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - IV Tree: - A connected subgraph having all the nodes of a graph without any loop. - Thus, a tree is a subgraph that has the following properties: - It must consist of all nodes of a complete graph. - For a graph having n number of nodes, the tree of the given graph will have n − 1 branches. - There exists one and only one path between any pair of nodes. - A tree should not have any closed path. - The rank of a tree is (n − 1). This is also the rank of the graph to which the tree belongs. Twigs: - The branches of a tree are known as twigs, Links or Chords: - The branches that are removed from the graph while forming a tree are termed as links or chords, - Links are complement of twigs. 12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 62. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - IV Tree: - A connected subgraph having all the nodes of a graph without any loop. - Thus, a tree is a subgraph that has the following properties: - It must consist of all nodes of a complete graph. - For a graph having n number of nodes, the tree of the given graph will have n − 1 branches. - There exists one and only one path between any pair of nodes. - A tree should not have any closed path. - The rank of a tree is (n − 1). This is also the rank of the graph to which the tree belongs. Twigs: - The branches of a tree are known as twigs, Links or Chords: - The branches that are removed from the graph while forming a tree are termed as links or chords, - Links are complement of twigs. Co-tree: 12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 63. Network Toplogy Terms & Definitions Network Topology: Terms and Definitions - IV Tree: - A connected subgraph having all the nodes of a graph without any loop. - Thus, a tree is a subgraph that has the following properties: - It must consist of all nodes of a complete graph. - For a graph having n number of nodes, the tree of the given graph will have n − 1 branches. - There exists one and only one path between any pair of nodes. - A tree should not have any closed path. - The rank of a tree is (n − 1). This is also the rank of the graph to which the tree belongs. Twigs: - The branches of a tree are known as twigs, Links or Chords: - The branches that are removed from the graph while forming a tree are termed as links or chords, - Links are complement of twigs. Co-tree: - The graph constituted with links is known as co-tree. 12 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 64. Network Toplogy Terms & Definitions Tree and Cotree Given a Graph: 1 2 3 4 a b c d e f Tree Twigs of tree Links of cotree 1 2 3 4 a b c d e f {a,b,d} {c,e,f} 1 2 3 4 a b c d e f {a,d,f} {c,b,e} 13 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 65. Network Toplogy Terms & Definitions Summary and a Question: Q. Does the following graph with branches a and e form a tree? 1 2 3 4 a b c fed 14 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 66. Network Toplogy Terms & Definitions Summary and a Question: Q. Does the following graph with branches a and e form a tree? 1 2 3 4 a b c fed
  • 67. The number of nodes in this subgraph is equal to that of the given graph. 14 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 68. Network Toplogy Terms & Definitions Summary and a Question: Q. Does the following graph with branches a and e form a tree? 1 2 3 4 a b c fed
  • 69. The number of nodes in this subgraph is equal to that of the given graph.
  • 70. But it has unconnected subgraphs and moreover total number branches = n − 1(= 3). Therefore, it is not a tree. 14 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 71. Network Toplogy References Text Books & References M. E. Van Valkenburg Network Analysis, 3/e. PHI, 2005. W.H. Hayt, J.E. Kemmerly, S.M. Durbin Engineering Circuit Analysis, 8/e. MH, 2012. 15 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 72. Network Toplogy References Text Books & References M. E. Van Valkenburg Network Analysis, 3/e. PHI, 2005. W.H. Hayt, J.E. Kemmerly, S.M. Durbin Engineering Circuit Analysis, 8/e. MH, 2012. M. Nahvi, J.A. Edminister SchuamâĂŹs Outline Electric Circuits, 4/e. TMH, SIE, 2007. A. Sudhakar, S.S. Palli Circuits and Networks: Analysis and Synthesis, 2/e. TMH, 2002. 15 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 73. Network Toplogy Khublei Shibun! Thank You! Any Question? 16 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 74. Home Assignment Graph and Incidence Matrix Problems for Practice: Graph and Incidence Matrix 1. Classify whether each of the following graphs as planar or nonplanar. 2. Find the number of possible trees for each graph and draw all possible trees. 1 2 3 4 (a) a b c d (b) 1 2 3 4 5 (c) 17 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 75. Home Assignment Graph and Incidence Matrix Problems for Practice - II Note: While replacing all elements of the network with lines to form a graph, we replace active elements by their internal resistances to simplify analysis and computation. For example - 1: 1 2 3 4 5 + −Vs R1 Is R2 I1 R3 I2 R4 I3 C IC L IL Is (a) 18 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 76. Home Assignment Graph and Incidence Matrix Problems for Practice - II Note: While replacing all elements of the network with lines to form a graph, we replace active elements by their internal resistances to simplify analysis and computation. For example - 1: 1 2 3 4 5 + −Vs R1 Is R2 I1 R3 I2 R4 I3 C IC L IL Is (a) 2 3 4 1, 5 (b) 18 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 77. Home Assignment Graph and Incidence Matrix Problems for Practice - II Note: Transformer gives a unconnected graph! For example - 2: 1 2 3 4 56 + −Vs R1 I1 R2 I2 K C IC R3 I3 I (a) 19 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 78. Home Assignment Graph and Incidence Matrix Problems for Practice - II Note: Transformer gives a unconnected graph! For example - 2: 1 2 3 4 56 + −Vs R1 I1 R2 I2 K C IC R3 I3 I (a) 1 2 6 3 4 5 (b) 19 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph
  • 79. Home Assignment Graph and Incidence Matrix Few non-planar Graphs 1 2 3 4 (a) 1 2 3 45 6 (b) 20 / 20 L. Joyprakash Singh (ECE, NEHU) EE-304 ENT :: Network topology and graph