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July 14th, 2014, 01:24 PM
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GATE reference books and the syllabus of Electrical Engineering

I want to give the exam of GATE and for that I want to get the list of some of the best GATE reference books and the syllabus of Electrical Engineering so can you please make it available for me?

As you want to get the list of some of the best GATE reference books and the syllabus of Electrical Engineering so here it is for you:

1. Principles of Electronics by V. K. Mehta
2. Radio Engineering by G. K. Mithal
3. Circuit Analysis by Gupta
4. Electrical Technology by Thereja
5. Electrical Power by Star
6. Physics of Semiconductor Devices by Sze
7. Automatic Control System by Kuo
8. Elements of Engineering Electromagnetics by Rao
9. Electromagnetic Waves and Radiating System by Jordan & Balmain
10. Modern Central Engineering by Ogata
11. Electromagnetic Waives and Field by R N Singh
12. Control Systems Engineering by Nagrath Gopal
13. Semi Conductor by Nagchoudhary
14. Integrated Circuits by D. Roy Choudhary
15. Network Analysis by Valkenbury
16. Basic Current Analysis by Murthy
17. Topics in Communication Theory by David Middleton

Other Important Books
1. Network Analysis by Van Valkenburg
2. Electromagnetic by Willain H. Hayt
3. Electrical Machinery by PS Bhimra
4. Electrical Machines by Nagrath & Kothari
5. Power System Engineering by Nagrath & Kothari
6. Electric Power Systems by CL Wadhwa
7. Automatic Control System by Benjamin C. Kuo
8. Control System Engg. By Nagrath & Gopal
9. Electrical & Electronic Measurement and Instrumentation by AK Sawhney
10. Integrated Electronics by Milman & Halkias; Millma & Grobel
11. Digital Logic & Computer Design by Morris Mano
12. Power Electronics by PS Bhimra

Paper-I
1. Electrical Circuits
1. Electrical Circuits 1& 2 by Nasser, Schaum Series
2. Electrical Circuits by Chakraborty
3. Network Analysis by Vanvulkenberg
4. Electrical Circuits by Hast & Kimberly, TMH Series.

2. Electromagnetic Theory
1. Field Theory by K A Gangadhar
2. Electromagnetic Waves by Jordan & Balmian
3. Electromagnetic Theory by Saddique, Oxford Publications

3. Microwaves and Antennas
1. Microwaves by Kulakarni
2. Microwaves by Liu, PHI Publications
3. Electromagnetic Theory by Saddique, Oxford Publications.
4. Electromagnetic Waves by Jordan & Balmian.

4. Analog Communication
1. Communication Systems, 2nd Edition, by Simon Haykins.
2. Analog and Digital Communications by K. Sam Sanmugam
3. Analog and Digital Communications, Schaum Series
4. Communication Systems by Kennedy.

5. Analog Electronics
1. Micro electronics by Milliman and Grabel.
2. Integrated Electronics by Milliman and Halkius
3. Pulse, Digital & Switching Waveforms by Taub abd Schilling
4. Op-amps by Roy Chowdhury
5. Op-Amps by Gaykwad

6. Digital Electronics
1. Digital Design by Morris Mano.
2. Switching theory and Logical Design by Kohavi.
3. Digital Electronics by R P Jain.

7. Electrical Machines
1. Electrical Machines by P. S. Bhimbra
2. Generalised theory of Machines by P. S. Bhimbra
3. Electrical Machines by Nagrath and Kothari

8. Power electronics and electrical drives
1. Power Elctronics by P. S. Bhimbra
2. Power Electronics by Rushid
3. Electrical Drives by G. K. Dubey

9. Signals and Systems
1. Signals and Systems by Oppenheim & Schaber
2. Digital Signal Processing by Proakis, Maholanakis
3. Digital Signal Processing by oppenheim & Willsky
4. Signals and Systems, Schaum Series.

Paper-II
1. Control Systems
1. Modern Control Systems by Nagrath and Gopal
2. Control Systems by B C Kuo.

2. Electrical Measurements
1. Electrical Measurements and Measuring Instruments by A K Sawhney.
2. Electronic Measurements by Cooper & etc. PHI Publications.

3. Power System Operation & Control
1. Power System Analysis by C L Wadhwa
2. Power Systems by Nagrath and Kothari
3. Power Systems by Ashfaq Hussein
4. Modern Power System Analysis by Nagrath
5. Power Systems by Sunil S Rao (for topics like RTU, SCADA, FACTS etc.)

4. Power System Protection
1. Power System Protection by Badri Ram and Vishwa Karma, TMH Publications
2. Power Systems by C L Wadhwa
3. Power Systems by Nagrath and Kothari

5. Non Conventional Energy resources by G. D. Rai, Khanna Publicaions

6. IC Fabrication and Technology
1. Microelectronics by Milliman and Grabel
2. Linear Integrated Circuits by Roy Chowdhury.

7. Radar, Satellite and TV
1. Microwaves by Kulakarni.
2. Communication Systems by Kennedy.
3. Satellite Engineering by John Wiley Publications.

8. Microprocessors
1. 8085 Microprocessor by Ramesh S Goankar
2. 8086 Microprocessor by Hall, TMH Publications.

9. Fibre Optic Communications by Senior, PHI Publications

10. Digital Communications
1. Analog & Digital Communications by K Sam Sanmugam
2. Analog & Digital Communications by Schum Series
3. Digital Communications by Simon Haykin

11. Electrical Engineering Materials
1. Electrical Engineering Materials by Seth & Gupta
2. Electrical Engineering Materials by Dekker.

Syllabus of Electrical Engineering:

ENGINEERING MATHEMATICS


Linear Algebra: Matrix Algebra, Systems of linear equations, Eigen values and eigen vectors.

Calculus: Mean value theorems, Theorems of integral calculus, Evaluation of definite and improper integrals, Partial Derivatives, Maxima and minima, Multiple integrals, Fourier series. Vector identities, Directional derivatives, Line, Surface and Volume integrals, Stokes, Gauss and Green’s theorems.

Differential equations: First order equation (linear and nonlinear), Higher order linear differential equations with constant coefficients, Method of variation of parameters, Cauchy’s and Euler’s equations, Initial and boundary value problems, Partial Differential Equations and variable separable method.

Complex variables: Analytic functions, Cauchy’s integral theorem and integral formula, Taylor’s and Laurent’ series, Residue theorem, solution integrals.

Probability and Statistics: Sampling theorems, Conditional probability, Mean, median, mode and standard deviation, Random variables, Discrete and continuous distributions,
Poisson,Normal and Binomial distribution, Correlation and regression analysis.

Numerical Methods: Solutions of non-linear algebraic equations, single and multi-step methods for differential equations.

Transform Theory: Fourier transform,Laplace transform, Z-transform.

ELECTRICAL ENGINEERING

Electric Circuits and Fields: Network graph, KCL, KVL, node and mesh analysis, transient response of dc and ac networks; sinusoidal steady-state analysis, resonance, basic filter concepts; ideal current and voltage sources, Thevenin’s, Norton’s and Superposition and Maximum Power Transfer theorems, two-port networks, three phase circuits; Gauss Theorem, electric field and potential due to point, line, plane and spherical charge distributions; Ampere’s and Biot-Savart’s laws; inductance; dielectrics; capacitance.

Signals and Systems: Representation of continuous and discrete-time signals; shifting and scaling operations; linear, time-invariant and causal systems; Fourier series representation of continuous periodic signals; sampling theorem; Fourier, Laplace and Z transforms.

Electrical Machines: Single phase transformer – equivalent circuit, phasor diagram, tests, regulation and efficiency; three phase transformers – connections, parallel operation; auto-transformer; energy conversion principles; DC machines – types, windings, generator characteristics, armature reaction and commutation, starting and speed control of motors; three phase induction motors – principles, types, performance characteristics, starting and speed control; single phase induction motors; synchronous machines – performance, regulation and parallel operation of generators, motor starting, characteristics and applications; servo and stepper motors.

Power Systems: Basic power generation concepts; transmission line models and performance; cable performance, insulation; corona and radio interference; distribution systems; per-unit quantities; bus impedance and admittance matrices; load flow; voltage control; power factor correction; economic operation; symmetrical components; fault analysis; principles of over-current, differential and distance protection; solid state relays and digital protection; circuit breakers; system stability concepts, swing curves and equal area criterion; HVDC transmission and FACTS concepts.

Control Systems: Principles of feedback; transfer function; block diagrams; steady-state errors; Routh and Niquist techniques; Bode plots; root loci; lag, lead and lead-lag compensation; state space model; state transition matrix, controllability and observability.

Electrical and Electronic Measurements: Bridges and potentiometers; PMMC, moving iron, dynamometer and induction type instruments; measurement of voltage, current, power, energy and power factor; instrument transformers; digital voltmeters and multimeters; phase, time and frequency measurement; Q-meters; oscilloscopes; potentiometric recorders; error analysis.

Analog and Digital Electronics: Characteristics of diodes, BJT, FET; amplifiers – biasing, equivalent circuit and frequency response; oscillators and feedback amplifiers; operational amplifiers – characteristics and applications; simple active filters; VCOs and timers; combinational and sequential logic circuits; multiplexer; Schmitt trigger; multi-vibrators; sample and hold circuits; A/D and D/A converters; 8-bit microprocessor basics, architecture, programming and interfacing.

Power Electronics and Drives: Semiconductor power diodes, transistors, thyristors, triacs, GTOs, MOSFETs and IGBTs – static characteristics and principles of operation; triggering circuits; phase control rectifiers; bridge converters – fully controlled and half controlled; principles of choppers and inverters; basis concepts of adjustable speed dc and ac drives.

Last edited by Neelurk; May 30th, 2020 at 05:43 PM.
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