EE1261--ELECTRICAL MACHINES LABORATORY
1. Open circuit and load characteristics of separately excited and self excited D.C. generator.
2. Load test on D.C. shunt motor.
3. Load test on D.C. series motor.
4. Swinburne-s test and speed control of D.C. shunt motor.
5. Load test on single phase transformer and open circuit and short circuit test on single phase transformer
6. Regulation of three phase alternator by EMF and MMF methods.
7. Load test on three phase induction motor.
8. No load and blocked rotor tests on three phase induction motor (Determination of equivalent circuit parameters)
9. Load test on single-phase induction motor.
10. Study of D.C. motor and induction motor starters.
Showing posts with label Regulation 2004. Show all posts
Showing posts with label Regulation 2004. Show all posts
Thursday, 6 December 2012
CS1152--DATA STRUCTURES LAB
1. Array implementation of List Abstract Data Type (ADT)
2. Linked list implementation of List ADT
3. Cursor implementation of List ADT
4. Array implementations of Stack ADT
5. Linked list implementations of Stack ADT
The following three exercises are to be done by implementing the following source files
(a) Program for -Balanced Paranthesis-
(b) Array implementation of Stack ADT
(c) Linked list implementation of Stack ADT
(d) Program for -Evaluating Postfix Expressions-
An appropriate header file for the Stack ADT should be #included in (a) and (d)
6. Implement the application for checking -Balanced Paranthesis- using array implementation of Stack ADT (by implementing files (a) and (b) given above)
7. Implement the application for checking -Balanced Paranthesis- using linked list implementation of Stack ADT (by using file (a) from experiment 6 and implementing file (c))
8. Implement the application for -Evaluating Postfix Expressions- using array and linked list implementations of Stack ADT (by implementing file (d) and using file (b), and then by using files (d) and (c))
9. Queue ADT
10. Search Tree ADT - Binary Search Tree
11. Heap Sort
12. Quick Sort
EC1252--SIGNALS AND SYSTEMS - Syllabus - Reg 2004
| EC1252--SIGNALS AND SYSTEMS | |
| REPRESENTATION OF SIGNALS | |
|
Continuous and discrete time signals: Classification of Signals -
Periodic aperiodic even - odd - energy and power signals - Deterministic
and random signals - complex exponential and sinusoidal signals -
periodicity - properties of discrete time complex exponential unit
impulse - unit step impulse functions - Transformation in independent
variable of signals: time scaling, time shifting.
Determination of Fourier series representation of continuous time and
discrete time periodic signals - Explanation of properties of continuous
time and discrete time Fourier series.
|
|
| ANALYSIS OF CONTINUOUS TIME SIGNALS AND SYSTEMS | |
|
Continuous time Fourier Transform and Laplace Transform analysis
with examples - properties of the Continuous time Fourier Transform and
Laplace Transform basic properties, Parseval-s relation, and convolution
in time and frequency domains.
Basic properties of continuous time systems: Linearity, Causality, time
invariance, stability, magnitude and Phase representations of frequency
response of LTI systems -Analysis and characterization of LTI systems
using Laplace transform:
Computation of impulse response and transfer function using Laplace
transform.
|
|
| SAMPLING THEOREM AND z-TRANSFORMS | |
|
Representation of continuous time signals by its sample - Sampling
theorem - Reconstruction of a Signal from its samples, aliasing -
discrete time processing of continuous time signals, sampling of band
pass signals
Basic principles of z-transform - z-transform definition - region of
convergence - properties of ROC - Properties of z-transform - Poles and
Zeros - inverse z-transform using Contour integration - Residue Theorem,
Power Series expansion and Partial fraction expansion, Relationship
between z-transform and Fourier transform.
|
|
| DISCRETE TIME SYSTEMS | |
|
Computation of Impulse & response & Transfer function
using Z Transform. DTFT Properties and examples - LTI-DT systems
-Characterization using difference equation - Block diagram
representation - Properties of convolution and the interconnection of
LTI Systems - Causality and stability of LTI Systems.
|
|
| SYSTEMS WITH FINITE AND INFINITE DURATION IMPULSE RESP | |
|
Systems with finite duration and infinite duration impulse
response - recursive and non-recursive discrete time system -
realization structures - direct form - I, direct form - II, Transpose,
cascade and parallel forms.
|
|
| Reference | |
| Text Books | |
1. AlanV.Oppenheim, Alan S.Willsky with S.Hamid Nawab, Signals & Systems, 2nd edn., Pearson Education, 1997.
|
|
| Reference Books | |
1. John G.Proakis
and Dimitris G.Manolakis, Digital Signal Processing, Principles,
Algorithms and Applications, 3rd edn., PHI, 2000.
2. M.J.Roberts, Signals and Systems Analysis using Transform method and
MATLAB, TMH 2003.
3. Simon Haykin and Barry Van Veen, Signals and Systems, John Wiley,
1999
4. K.Lindner, -Signals and Systems McGraw Hill International, 1999.
5. Moman .H. Hays,- Digital Signal Processing Schaum-s outlines, Tata
McGraw-Hill Co Ltd., 2004.
6. Ashok Amhardar, -Analog and Digital Signal Processing 2 nd Edition
Thomson 2002.
| |
MA1201--MATHEMATICS III - Syllabus - Reg 2004
| MA1201--MATHEMATICS III | |
| PARTIAL DIFFERENTIAL EQUATIONS | |
|
Formation of partial differential equations by elimination of
arbitrary constants and arbitrary functions - Solution of standard types
of first order partial differential equations - Lagranges linear
equation - Linear partial differential equations of second and higher
order with constant coefficients.
|
|
| FOURIER SERIES | |
|
Dirichlets conditions - General Fourier series - Odd and even
functions - Half range sine series - Half range cosine series - Complex
form of Fourier Series - Parsevals identify - Harmonic Analysis.
|
|
| BOUNDARY VALUE PROBLEMS | |
|
Classification of second order quasi linear partial differential
equations - Solutions of one dimensional wave equation - One dimensional
heat equation - Steady state solution of two-dimensional heat equation
(Insulated edges excluded) - Fourier series solutions in Cartesian
coordinates.
|
|
| FOURIER TRANSFORM | |
|
Fourier integral theorem (without proof) - Fourier transform pair - Sine and
Cosine transforms - Properties - Transforms of simple functions - Convolution theorem - Parsevals identity.
|
|
| Z -TRANSFORM AND DIFFERENCE EQUATIONS | |
|
Z-transform - Elementary properties - Inverse Z - transform -
Convolution theorem -Formation of difference equations - Solution of
difference equations using Z - transform.
|
|
| Reference | |
| Text Books | |
1. Grewal, B.S.,
-Higher Engineering Mathematics Thirty Sixth Edition , Khanna
Publishers, Delhi, 2001.
2. Kandasamy, P., Thilagavathy, K., and Gunavathy, K., -Engineering
Mathematics Volume III S. Chand & Company ltd., New Delhi, 1996.
3. Wylie C. Ray and Barrett Louis, C., -Advanced Engineering Mathematics
Sixth Edition, McGraw-Hill, Inc., New York, 1995.
|
|
| Reference Books | |
1. Andrews, L.A.,
and Shivamoggi B.K., -Integral Transforms for Engineers and Applied
Mathematicians,- Macmillen, New York, 1988.
2. Narayanan, S., Manicavachagom Pillay, T.K. and Ramaniah, G.,
-Advanced Mathematics for Engineering Students Volumes II and III, S.
Viswanathan (Printers and Publishers) Pvt. Ltd. Chennai, 2002.
3. Churchill, R.V. and Brown, J.W., -Fourier Series and Boundary Value
Problems Fourth Edition, McGraw-Hill Book Co., Singapore, 1987.
| |
EC1203--ELECTRONIC CIRCUITS I Syllabus
| EC1203--ELECTRONIC CIRCUITS I | |
| TRANSISTOR BIASING | |
|
BJT - Need for biasing - Fixed bias circuit, Load line and
quiescent point. Variation of quiescent point due to hFE variation
within manufacturers tolerance. Stability factors. Different types of
biasing circuits. Method of stabilizing the Q point to the extent
possible. Advantage of Self bias (voltage divider bias) over other types
of biasing. Use of Self bias circuit as a constant current circuit.
Source self bias and voltage divider bias for FET. Use of JFET as a
voltage variable resistor.
|
|
| MIDBAND ANALYSIS OF SMALL SIGNAL AMPLIFIERS | |
|
CE, CB and CC amplifiers. Method of drawing small-signal
equivalent circuit. Midband analysis of various types of single stage
amplifiers to obtain gain, input impedance and output impedance.
Miller-s theorem. Comparison of CB, CE and CC amplifiers and their uses.
Darlington connection using similar and Complementary transistors.
Methods of increasing input impedance using Darlington connection and
bootstrapping. CS, CG and CD (FET) amplifiers. Multistage amplifiers.
Basic emitter coupled differential amplifier circuit. Bisection theorem.
Differential gain. CMRR. Use of constant current circuit to improve
CMRR. Derivation of transfer characteristic, Transconductance. Use as
Linear amplifier, limiter, amplitude modulator
|
|
| FREQUENCY RESPONSE OF AMPLIFIERS | |
|
General shape of frequency response of amplifiers. Definition of
cut off frequencies and bandwidth. Low frequency analysis of amplifiers
to obtain lower cut off frequency Hybrid - pi equivalent circuit of
BJTs. High frequency analysis of BJT amplifiers to obtain upper cut off
frequency. High frequency equivalent circuit of FETs. High frequency
analysis of FET amplifiers. Gain-bandwidth product of FETs. General
expression for frequency response of multistage amplifiers. Calculation
of overall upper and lower cut off frequencies of multistage
amplifiers. Amplifier rise time and sag and their relation to cut off
frequencies.
|
|
| LARGE SIGNAL AMPLIFIERS | |
|
Classification of amplifiers (Class A, B, AB, C&D), Efficiency
of class A, RC coupled and transformer-coupled power amplifiers. Class B
complementary-symmetry, push-pull power amplifiers. Calculation of
power output, efficiency and power dissipation. Crossover distortion and
methods of eliminating it.
Heat flow calculations using analogous circuit. Calculation of actual
power handling capacity of transistors with and without heat sink. Heat
sink design.
|
|
| RECTIFIERS AND POWER SUPPLIES | |
|
Half-wave, full-wave and bridge rectifiers with resistive load.
Analysis for Vdc and ripple voltage with C, CL, L-C and C-L-C filters.
Voltage multipliers Zenerdiode regulator. Electronically regulated d.c
power supplies. Line regulation, output resistance and temperature
coefficient. Switched mode power supplies. Power control using SCR.
|
|
| Reference | |
| Text Books | |
1. Millman J. and Halkias .C., " Integrated Electronics ", Tata McGraw-Hill.
|
|
| Reference Books | |
1. Robert L. Boylestad and Louis Nashelsky, 8th edn., PHI, 2002.
2. S.Salivahanan, et.al, -Electronic Devices and Circuits TMH, 1998.
3. Floyd, Electronic Devices, Sixth edition, Pearson Education, 2003.
4. I.J. Nagrath, Electronics - Analog and Digital, PHI, 1999.
| |
EC1202--ELECTRON DEVICES - Regulation 2004 - Anna University Chennai Syllabus
| EC1202--ELECTRON DEVICES | |
| ELECTRON BALLISTICS AND INTRINSIC SEMICONDUCTORS | |
Force on charge in electric field - Motion of Charge in uniform
and time varying electric fields - Force on a moving charge in a
magnetic field - calculation of cyclotron frequency - calculation of
electrostatic and magnetic deflection sensitivity.
Energy band structure of conductors, semiconductors and insulators -
Density distribution of available energy states in semiconductors -
Fermi- Diac probability distribution function at different temperatures -
Thermal generation of carriers - Calculation of electron and hole
densities in intrinsic semiconductors - Intrinsic concentration - Mass
Action Law.
|
|
| EXTRINSIC SEMICONDUCTOR AND PN JUNCTIONS | |
N and P type semiconductors and their energy band structures - Law
of electrical neutrality - Calculation of location of Fermi level and
free electron and hole densities in extrinsic semiconductors - Mobility,
drift current and conductivity - Diffusion current - Continuity
equation - Hall effect.
Band structure of PN Junction - Current Component in a PN Junction -
Derivation of diode equation - Temperature dependence of diode
characteristics.
|
|
| SWITCHING CHARACTERISTICS OF PN JUNCTION AND SPECIAL DI | |
Calculation of transition and diffusion capacitance - Varactor
diode - charge control description of diode - switching characteristics
of diode - Mechanism of avalanche and Zener breakdown - Temperature
dependence of breakdown voltages - Backward diode - Tunneling effect in
thin barriers Tunnel diode - Photo diode - Light emitting diodes.
|
|
| BIPOLAR JUNCTION TRANSISTORS AND FIELD EFFECT TRANSISTO | |
Construction of PNP and NPN transistors - BJT current components -
Emitter to collector and base to collector current gains - Base width
modulation CB and CE characteristics - Breakdown characteristics - Ebers
- Moll model - Transistor switching times.
Construction and Characteristics of JFET - Relation between Pinch off
Voltage and drain current - Derivation. MOSFETS - Enhancement and
depletion types.
|
|
| METAL SEMICONDUCTOR CONTACTS AND POWER CONTROL DEVICES | |
Metal Semiconductor Contacts - Energy band diagram of metal
semiconductor junction Schottky diode and ohmic contacts.
Power control devices: Characteristics and equivalent circuit of UJT -
intrinsic stand off ratio. PNPN diode - Two transistor model, SCR,
Triac, Diac.
|
|
| Reference | |
| Text Books | |
1. Jacob Millman & Christos C.Halkias, -Electronic Devices and Circuits- Tata McGraw-Hill, 1991
|
|
| Reference Books | |
1. Nandita Das Gupta and Amitava Das Gupta, Semiconductor Devices - Modelling and Technology, Prentice Hall of India, 2004.
2. Donald A.Neaman,- Semiconductor Physics and Devices- 3rd Ed., Tata McGraw-Hill 2002.
3. S.Salivahanan, N.Sureshkumar and A.Vallavaraj, Electronic Devices and Circuits, TMH, 1998.
4. S.M.Sze, Semiconductor Devices - Physics and Technology, 2nd edn. John Wiley, 2002.
5. Ben G.Streetman and Sanjay Banerjee, Solid State Electronic Devices, Pearson Education 2000.
| |
EE1211--ELECTRICAL MACHINES - Regulation 2004 - Anna University Chennai Syllabus
| EE1211--ELECTRICAL MACHINES | |
| D.C. MACHINES | |
Constructional details - emf equation - Methods of excitation -
Self and separately excited generators - Characteristics of series,
shunt and compound generators - Principle of operation of D.C. motor -
Back emf and torque equation - Characteristics of series, shunt and
compound motors - Starting of D.C. motors - Types of starters - Testing,
brake test and Swinburne-s test - Speed control of D.C. shunt motors.
|
|
| TRANSFORMERS | |
Constructional details - Principle of operation - emf equation -
Transformation ratio - Transformer on no load - Parameters referred to
HV/LV windings - Equivalent circuit - Transformer on load - Regulation -
Testing - Load test, open circuit and short circuit tests.
|
|
| INDUCTION MOTORS | |
Construction - Types - Principle of operation of three-phase
induction motors - Equivalent circuit - Performance calculation -
Starting and speed control - Single-phase induction motors (only
qualitative treatment).
|
|
| SYNCHRONOUS AND SPECIAL MACHINES | |
Construction of synchronous machines-types - Induced emf - Voltage
regulation; emf and mmf methods - Brushless alternators - Reluctance
motor - Hysteresis motor - Stepper motor.
|
|
| TRANSMISSION AND DISTRIBUTION | |
Structure of electric power systems - Generation, transmission,
sub-transmission and distribution systems - EHVAC and EHVDC transmission
systems - Substation layout - Insulators - cables.
|
|
| Reference | |
| Text Books | |
1. D.P.Kothari and I.J.Nagrath, -Basic Electrical Engineering Tata McGraw Hill publishing company ltd, second edition, 2002.
2. C.L. Wadhwa, -Electrical Power Systems Wiley eastern ltd India, 1985.
|
|
| Reference Books | |
1. S.K.Bhattacharya, -Electrical Machines Tata McGraw Hill Publishing company ltd, second edition, 1998.
2. V.K.Mehta and Rohit Mehta, -Principles of Power System S.Chand and Company Ltd, third edition, 2003.
| |
EC1201--DIGITAL ELECTRONICS - Regulation 2004 - Ann University Chennai Syllabus
| EC1201--DIGITAL ELECTRONICS | |
| NUMBER SYSTEMS | |
|
Binary, Octal, Decimal, Hexadecimal-Number base conversions -
complements - signed Binary numbers. Binary Arithmetic- Binary codes:
Weighted -BCD-2421-Gray code-Excess 3 code-ASCII -Error detecting code -
conversion from one code to another-Boolean postulates and laws
-De-Morgan-s Theorem- Principle of Duality- Boolean expression - Boolean
function- Minimization of Boolean expressions - Sum of Products (SOP)
-Product of Sums (POS)-Minterm- Maxterm- Canonical forms - Conversion
between canonical forms -Karnaugh map Minimization - Don-t care
conditions.
|
|
| LOGIC GATES & COMBINATIONAL CIRCUITS | |
|
LOGIC GATES: AND, OR, NOT, NAND, NOR, Exclusive - OR and Exclusive
- NOR- Implementations of Logic Functions using gates, NAND -NOR
implementations -Multi level gate implementations- Multi output gate
implementations. TTL and CMOS Logic and their characteristics -Tristate
gates.
COMBINATIONAL CIRCUITS:
Design procedure - Adders-Subtractors - Serial adder/ Subtractor -
Parallel adder/ Subtractor- Carry look ahead adder- BCD adder- Magnitude
Comparator- Multiplexer/ Demultiplexer- encoder / decoder - parity
checker - code converters. Implementation of combinational logic using
MUX, ROM, PAL and PLA.
|
|
| SEQUENTIAL CIRCUIT | |
|
Flip flops SR, JK, T, D and Master slave - Characteristic table
and equation -Application table - Edge triggering -Level Triggering
-Realization of one flip flop using other flip flops -Asynchronous /
Ripple counters - Synchronous counters -Modulo - n counter
-Classification of sequential circuits - Moore and Mealy -Design of
Synchronous counters: state diagram- State table -State minimization
-State assignment- ASM-Excitation table and maps-Circuit implementation -
Register - shift registers- Universal shift register - Shift counters -
Ring counters.
|
|
| ASYNCHRONOUS SEQUENTIAL CIRCUITS | |
|
Design of fundamental mode and pulse mode circuits - primitive
state / flow table - Minimization of primitive state table -state
assignment - Excitation table - Excitation map- cycles - Races -Hazards:
Static -Dynamic -Essential -Hazards elimination.
|
|
| MEMORY DEVICES | |
|
Classification of memories -RAM organization - Write operation
-Read operation - Memory cycle - Timing wave forms - Memory decoding -
memory expansion - Static RAM Cell-Bipolar RAM cell - MOSFET RAM cell
-Dynamic RAM cell -ROM organization - PROM -EPROM -EEPROM -EAPROM
-Programmable Logic Devices -Programmable Logic Array (PLA)-
Programmable Array Logic (PAL)-Field Programmable Gate Arrays (FPGA).
|
|
| Reference | |
| Text Books | |
1. M. Morris Mano,
Digital Design, 3.ed., Prentice Hall of India Pvt. Ltd., New Delhi,
2003/Pearson Education (Singapore) Pvt. Ltd., New Delhi, 2003 - (Unit I,
II, V)
2. John .M Yarbrough, Digital Logic Applications and Design, Thomson-
Vikas publishing house, New Delhi, 2002. (Unit III, IV)
|
|
| Reference Books | |
1. S. Salivahanan
and S. Arivazhagan, Digital Circuits and Design, 2nd ed., Vikas
Publishing House Pvt. Ltd, New Delhi, 2004
2. Charles H.Roth. -Fundamentals of Logic Design Thomson Publication
Company, 2003.
3. Donald P.Leach and Albert Paul Malvino, Digital Principles and
Applications, 5 ed., Tata McGraw Hill Publishing Company Limited, New
Delhi, 2003.
4. R.P.Jain, Modern Digital Electronics, 3 ed., Tata McGraw-Hill
publishing company limited, New Delhi, 2003.
5. Thomas L. Floyd, Digital Fundamentals, Pearson Education, Inc, New
Delhi, 2003
6. Donald D.Givone, Digital Principles and Design, Tata Mc-Graw-Hill
Publishing company limited, New Delhi, 2003.
| |
CS1151--DATA STRUCTURES - Anna University Chennai Syllabus
| CS1151--DATA STRUCTURES | |
| PROBLEM SOLVING | |
|
Problem solving - Top-down Design - Implementation - Verification - Efficiency - Analysis - Sample algorithms.
|
|
| LISTS, STACKS AND QUEUES | |
|
Abstract Data Type (ADT) - The List ADT - The Stack ADT - The Queue ADT
|
|
| TREES | |
|
Preliminaries - Binary Trees - The Search Tree ADT - Binary Search
Trees - AVL Trees - Tree Traversals - Hashing - General Idea - Hash
Function - Separate Chaining - Open Addressing - Linear Probing -
Priority Queues (Heaps) - Model - Simple implementations - Binary Heap
|
|
| SORTING | |
|
Preliminaries - Insertion Sort - Shellsort - Heapsort - Mergesort - Quicksort - External Sorting
|
|
| GRAPHS | |
|
Definitions - Topological Sort - Shortest-Path Algorithms -
Unweighted Shortest Paths - Dijkstra-s Algorithm - Minimum Spanning Tree
- Prim-s Algorithm - Applications of Depth-First Search - Undirected
Graphs - Biconnectivity - Introduction to NP-Completeness
|
|
| Reference | |
| Text Books | |
1. R. G. Dromey,
-How to Solve it by Computer- (Chaps 1-2), Prentice-Hall of India, 2002.
2. M. A. Weiss, -Data Structures and Algorithm Analysis in C 2nd ed,
Pearson Education Asia, 2002. (chaps 3, 4.1-4.4 (except 4.3.6), 4.6,
5.1-5.4.1, 6.1-6.3.3, 7.1-7.7 (except 7.2.2, 7.4.1, 7.5.1, 7.6.1, 7.7.5,
7.7.6), 7.11, 9.1-9.3.2, 9.5-9.5.1, 9.6-9.6.2, 9.7)
|
|
| Reference Books | |
1. Y. Langsam, M.
J. Augenstein and A. M. Tenenbaum, -Data Structures using C Pearson
Education Asia, 2004
2. Richard F. Gilberg, Behrouz A. Forouzan, -Data Structures - A
Pseudocode Approach with C Thomson Brooks / COLE, 1998.
3. Aho, J. E. Hopcroft and J. D. Ullman, -Data Structures and Algorithms
Pearson education Asia, 1983.
| |
Anna University Chennai B.E- Electronics and Communication Engineering Syllabus (Regulation 2004)
Subscribe to:
Posts (Atom)