Network Analysis and Synthesis detailed syllabus scheme for B.Tech Electrical Engineering (EE), 2018-19 onwards has been taken from the DBATU official website and presented for the Bachelor of Technology students. For Subject Code, Course Title, Lecutres, Tutorials, Practice, Credits, and other information, do visit full semester subjects post given below.
For all other DBATU Syllabus for Electrical Engineering 3rd Sem 2018-19, do visit EE 3rd Sem 2018-19 Onwards Scheme. The detailed syllabus scheme for network analysis and synthesis is as follows.
Network Analysis and Synthesis Syllabus for Electrical Engineering (EE) 2nd Year 3rd Sem 2018-19 DBATU
Prerequisites:
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Course Outcomes:
- To review basic components of electric network.
- To design and develop network equations and their solutions.
- To apply Laplace theorem for electric network analyses To analyze AC circuit.
UNIT 1
Active & Passive Circuit Element: Independent & dependent voltage & current sources, R, L, C & mutual inductance circuit parameters, Their mathematical modes, Voltage current power relations. Classification of element: Lumped distributed, Linear & non-linear, Unilateral, Bilateral, Time invariant & variant, Pace invariant & variant, Super position, Thevenins, Nortons Reciprocity, Maximum power transfer, Substitution, Tellegen’s theorem. 6
UNIT 2
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UNIT 3
Solution of Network Equations: Classification solution of first, Second order differential equations of series & parallel R-L, R-C, R-L-C circuits, General & particular solutions, Particular integral & complimentary functions, Time constant, Mathematical analysis of circuit transients, initial conditions in network, Procedure of evaluality, Conditions in network problems, Solution of D.C. resistive network & A. C. sinusoidal steady state networks, Writing loop equations, Node equations directly in matrices form. Numericals 6
UNIT 4
Application of Laplaces Transform: Solution of differential equation using Laplace transform, Unit step, Impulse & ramp functions, Laplace transform of singular & shifted function, Convolution integral, Concept of complex frequency, Transform impedance & transform admittance, Series & parallel combination of these transform networks. 6
UNIT 5
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UNIT 6
Sinusoidal Steady State A. C. Circuit: R-L-C series circuits, Series resonance Variation of Z with frequency, maximum value of VC & VL, Magnification, Bandwidth, Q factor. Parallel Resonance: Resonance frequency for tank circuit frequency, Locus diagram of series R-L, R-C with variable R & X. Filter: Introduction classification, Low pass, High pass, Band pass & band reject filter, active & passive filters. Application of Fourier series, Expansion for periodic & non-sinusoidal waveforms. 6
Reference Books:
- Mac.E Van Valkenburg, Network Analysis,
- Franklin Fa-Kun. Kuo, Network Analysis & Synthesis, John Wiley & Sons.
- M. L. Soni, J. C. Gupta, A Course in Electrical Circuits and Analysis,
- Mac.E Van Valkenburg, Network Synthesiss,
- Joseph A. Edminister, Mahmood Maqvi, Theory and Problems of Electric Circuits, Schaum’s Outline Series,
For detail syllabus of all other subjects of Electrical Engineering (EE) 3rd Sem 2018-19 regulation, visit EE 3rd Sem Subjects syllabus for 2018-19 regulation.