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  #2  
3rd September 2012, 10:33 AM
Super Moderator
 
Join Date: May 2012
Re: IES Syllabus PDF Electrical

IES Syllabus for Electrical is given below:

Electrical Engineering Paper - I
(For both objective and conventional types papers)

1. EM Theory
Electric and magnetic field Gauss's Law and Amperes Law Fields in dielectrics, conductors and magnetic materials Maxwell's equations Time varying fields Plane-Wave propagating in dielectric and conducting media Transmission lines

2. Electrical Materials
Band Theory, Conductors, Semi-conductors and Insulators Super-conductivity Insulators for electrical and electronic applications Magnetic materials Ferro and ferri magnetism Ceramics, Properties and applications Hall Effect and its applications Special semi conductors

3. Electrical Circuits
Circuits elements Kirchoff's Laws Mesh and nodal analysis Network Theorems and applications Natural response and forced response Transient response and steady state response for arbitrary inputs Properties of networks in terms of poles and zeros Transfer function Resonant circuits Three phase circuits. Two-port networks Elements of two-element network synthesis

4. Measurements and Instrumentation
Units and Standards Error analysis, measurement of current, Voltage, power, Power-factor and energy indicating instruments Measurement of resistance, inductance, Capacitance and Frequency Bridge measurements Electronic measuring instruments Digital Voltmeter and frequency counter Transducers and their applications to the measurement of non-electrical quantities like temperature, pressure, flow-rate displacement, acceleration, and noise level etc. Data acquisition systems A/D and D/A converters

5. CONTROL SYSTEMS.
Mathematical modelling of physical systems Block diagrams and signal flow graphs and their reduction. Time domain and frequency domain analysis of linear dynamical system Errors for different type of inputs and stability criteria for feedback systems Stability analysis using Routh-Hurwitz array, Nyquist plot and Bode plot. Root locus and Nichols chart and the estimation of gain and phase margin. Basic concepts of compensator design. State variable matrix and its use in system modeling and design sampled data system and performance of such a system with the samples in the error channel Stability of sampled data system. Elements of non-linear control analysis Control system components, electromechanical, hydraulic, pneumatic components.

Electrical Engineering Paper - II
(For both objective and conventional types papers)

1. Electrical Machines and Power Transformers
Magnetic Circuits - Analysis and Design of Power transformers Construction and testing Equivalent circuits Losses and efficiency Regulation Auto-transformer, 3-phase transformer Parallel operation.
Basic concepts in rotating machines EMF, torque, basic machine types Construction and operation, leakage losses and efficiency
B.C. Machines Construction, Excitation methods. Circuit models Armature reaction and commutation. Characteristics and performance analysis Generators and motors starting and speed control Testing, Losses and efficiency
Synchronous Machines Construction Circuit model Operating characteristics and performance analysis Synchronous reactance Efficiency Voltage regulation Salient-pole machine, Parallel operation. Hunting Short circuit transients
Induction Machines Construction Principle of operation Rotating fields Characteristics and performance analysis Determination of circuit model Circle diagram Starting and speed control.
Fractional KW motors. Single-phase synchronous and induction motors.

2. Power systems
Types of Power Stations, Hydro, Thermal and Nuclear Stations Pumped storage plants Economics and operating factors

Power transmission lines modeling and performance characteristics Voltage control Load flow studies. Optimal power system operation Load frequency control Symmetrical short circuit analysis ZBus formulation Symmetrical Components per Unit representation Fault analysis Transient and steady-state stability of power systems Equal area criterion
Power system Transients Power system Protection Circuit breakers Relays HVDC transmission

3. ANALOG AND DIGITAL ELECTRONICS AND CIRCUITS

Semiconductor device physics, PN junctions and transistors, circuit models and parameters, FET, Zener, tunnel, Schottky, photo diodes and their applications, rectifier circuits, voltage regulators and multipliers, switching behavior of diodes and transistors.
Small signal amplifiers, biasing circuits, frequency response and improvement, multistage amplifiers and feed-back amplifiers, D.C. amplifiers, Oscillators Large signal amplifiers, coupling methods, push pull amplifiers, operational amplifiers, and wave shaping circuits. Multivibrators and flip-flops and their applications Digital logic gate families, universal gates-combination circuits for arithmetic and logic operational, sequential logic circuits. Counters, registers, RAM and ROMs

4. MICROPROCESSORS
Microprocessor architecture-Instruction set and simple assembly language programming interfacing for memory and I/O Applications of Micro-processors in power system

5. COMMUNICATION SYSTEMS
Types of modulation; AM, FM and PM. Demodulators. Noise and bandwidth considerations Digital communication systems Pulse code modulation and demodulation Elements of sound and vision broadcasting Carrier communication. Frequency division and time division multiplexing, Telemetry system in power engineering

6. POWER ELECTRONICS
Power Semiconductor devices Thyristor Power transistor, GTOs and MOSFETS Characteristics and operation AC to DC Converters; 1-phase and 3-phase DC to DC Converters; AC regulators Thyristor controlled reactors; switched capacitor networks. Inverters single-phase and 3-phase Pulse width modulation Sinusoidal modulation with uniform sampling Switched mode power supplies
  #3  
6th June 2014, 05:14 AM
Unregistered
Guest
 

[QUOTE=Shaleen;14103]IES Syllabus for Electrical is given below:

Electrical Engineering Paper - I
(For both objective and conventional types papers)

1. EM Theory
Electric and magnetic field Gauss's Law and Amperes Law Fields in dielectrics, conductors and magnetic materials Maxwell's equations Time varying fields Plane-Wave propagating in dielectric and conducting media Transmission lines

2. Electrical Materials
Band Theory, Conductors, Semi-conductors and Insulators Super-conductivity Insulators for electrical and electronic applications Magnetic materials Ferro and ferri magnetism Ceramics, Properties and applications Hall Effect and its applications Special semi conductors

3. Electrical Circuits
Circuits elements Kirchoff's Laws Mesh and nodal analysis Network Theorems and applications Natural response and forced response Transient response and steady state response for arbitrary inputs Properties of networks in terms of poles and zeros Transfer function Resonan
  #4  
3rd December 2019, 03:01 PM
Unregistered
Guest
 
Re: IES Syllabus PDF Electrical

Can you provide me the syllabus of Engineering Services Examination (ESE/IES) Electrical conducted by UPSC (Union Public Services Commission)?
  #5  
3rd December 2019, 03:01 PM
Super Moderator
 
Join Date: Aug 2012
Re: IES Syllabus PDF Electrical

The syllabus of Engineering Services Examination (ESE/IES) Electrical conducted by UPSC (Union Public Services Commission) is as follows:


EEE Syllabus for Paper 1

Electric Circuits
Network graph
KCL, KVL, Node and Mesh analysis
Sinusoidal steady-state analysis
Thevenin’s theorem, Norton’s theorem
Three phase circuits

Electromagnetic Fields
Electric Field Intensity, Electric Flux Density, Gauss's Law,
Electric field & potential due to point, line, plane & spherical charge distributions
Biot-Savart’s law, Ampere’s law
Self and Mutual inductance of simple configurations

Signals and Systems
Representation of continuous and discrete-time signals
Linear Time-Invariant and Causal systems, Sampling theorem.
Applications of Fourier Transform, Laplace Transform, and z-Transform

Electrical Machines
Single phase transformer,
Three phase transformers,
Auto-transformer, DC machines, Three phase induction motors, Operating principle of single phase induction motors, Synchronous machines
Types of losses and efficiency calculations of electric machines

Power Systems
Power generation concepts
Electric field distribution and insulators
Gauss-Seidel and Newton-Raphson load flow methods
Voltage and Frequency control, Power factor correction
Symmetrical components, Symmetrical and unsymmetrical fault analysis,
Circuit breakers, System stability concepts

Control Systems
Mathematical modeling and representation of systems
Feedback principle, transfer function, Block diagrams and Signal flow graphs
Transient and Steady-state analysis of linear time-invariant systems
Routh-Hurwitz and Nyquist criteria, Bode plots.
P, PI and PID controllers; State space model, State transition matrix.

Electrical and Electronic Measurements
Bridges and Potentiometers
Measurement of voltage, current, power, energy and power factor
Instrument transformers, Digital voltmeters, and multimeters
Phase, Time and Frequency measurement; Oscilloscopes

Analog and Digital Electronics
Characteristics of diodes, BJT, MOSFET
Oscillators and Feedback amplifiers
Operational amplifiers
8085Microprocessor

Power Electronics
Characteristics of semiconductor power devices: Diode, Thyristor, Triac, GTO, MOSFET, IGBT;
DC to DC conversion: Buck, Boost and Buck-Boost converters;
Single and three phase configurations of uncontrolled rectifiers, Line commutated thyristor-based converters, Bidirectional ac to dc voltage source converters,
Issues of line current harmonics, Power factor, Distortion factor of ac to dc converters, Single phase and three phase inverters, Sinusoidal pulse modulation.


EEE Syllabus for Stage 2 Paper 2
Analog and Digital Electronics
Systems and Signal Processing
Control Systems
Electrical Machines
Power Systems
Power Electronics and Drives


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