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Page 1: Electrical Network Analysiseestaff.kku.ac.th/~jamebond/182304/2556_2/ENAcontentsV2.pdf · Electrical Network Analysis Surachai Limyingcharoen General circuit analysis: coupled inductors;

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Electrical Network AnalysisSurachai Limyingcharoen

General circuit analysis: coupled inductors; source transformation; VCR of circuit elements using phasors, Circuit topology and Kirchhoff's law in terms of of nodes; meshes; loops and cut-sets, Node; mesh; fundamental loop and fundamental cut-set analysis of sinusoidal steady-state networks, Two-port networks: impedance-; admittance-; ABCD- and hybrid-parameter models; terminated two-ports, I/O differential equations and responses of higher-order circuits, Network functions: poles and zeros; frequency responses, State-space models: state-space models of linear time-invariant; linear time-varying and nonlinear circuits; application of linear graphs; solution to state equations, Applications of Fourier series and harmonic analysis

Copyright 2009: Surachai Limyingcharoen

Page 2: Electrical Network Analysiseestaff.kku.ac.th/~jamebond/182304/2556_2/ENAcontentsV2.pdf · Electrical Network Analysis Surachai Limyingcharoen General circuit analysis: coupled inductors;

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Contents

Copyright 2009: Surachai Limyingcharoen

General circuit analysis: coupled inductors, source transformation, VCR of circuit elements using phasors

Circuit topology and Kirchhoff's law in terms of of nodes, meshes, loops and cut-sets

Node, mesh, fundamental loop and fundamental cut-set analysis of sinusoidal steady-state networks

Two-port networks: description of two-ports, impedance-, admittance-, ABCD- and hybrid-parameter models, terminated two-ports

Higher-order circuits: input-output differential equations, zero-input, zero-state and complete responses

Page 3: Electrical Network Analysiseestaff.kku.ac.th/~jamebond/182304/2556_2/ENAcontentsV2.pdf · Electrical Network Analysis Surachai Limyingcharoen General circuit analysis: coupled inductors;

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Contents

Copyright 2009: Surachai Limyingcharoen

Network functions: definition, poles and zeros, frequency responses

State-space models: state-space of linear time-invariant, linear time-varying and nonlinear circuits, formation of state equations of linear time-invariant networks using linear graphs, solution to state equations

Applications of Fourier series to non-sinusoidal steady-state circuits, harmonic impedances and harmonic analysis

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