Showing posts with label ME / M TECH DIGITAL COMMUNICATION SYLLABUS. Show all posts
Showing posts with label ME / M TECH DIGITAL COMMUNICATION SYLLABUS. Show all posts

August 10, 2011

DIGITAL COMMUNICATION 2ND SEMESTER SYLLABUS

MEDC-201 System Programming

MEDC-202 Modelling & Simulation of Computer Networks

MEDC-203 Network Design Technology

MEDC-204 Optical Networks

MEDC-205 Mobile & Satellite Communication

MEDC-206 Lab-III (201)

MEDC-207 Lab-IV (202)

DATA COMMUNICATION AND COMPUTER NETWORK (MEDC-105)

Rajiv Gandhi Proudhyogiki Vishwavidyalaya, Bhopal
Master of Engineering ( M.E.)1st Sem Digital Communication Syllabus
DATA COMMUNICATION AND COMPUTER NETWORK (MEDC-105) 
UNIT I
Review of synchronous and asynchronous transmission: circuit switching, message switching,packet switching and their comparison, various detector techniques, parity check, vertical and longitudinal redundancy check and CRC code and their error detecting capabilities. RS-232 C and X.21 standards, modern operation, null model.

UNIT II
Data link control: point-to-point and multi-point links, flow control, sliding window protocol, various ARQ technique for eroor control and their comparison and performance analysis,HDLC as a bit oriented link control protocol.

UNIT III
Communication Network:-
Virtual circuit and datagram, routing algorithm, dijkstera and Bellman ford least cost, algorithm, various routing protocol, congestion control technique, deadlock and its avoidance.

UNIT IV
Local Area network:-Various topologies and medium access control schemes such as contention,polling,token parsing and performance analysis, various IEEE standards for LAN, UBS LANs,FDDI.

UNIT V
Introduction to WAN packet switching technologies such as ATM and Frame relay.Introduction to TCP / IP protocols.

REFERENCE BOOKS:

  • Data And Computer Communication By W. Stalling Phi
  • Computer Networks Y Tanenebaum Phi
  • Telecommunication Network, Protocols, Modelings And Analysis By M. Schwartz
Local Area Network By Keiser Tmh

VLSI DESIGN (MEDC-104)

Rajiv Gandhi Proudhyogiki Vishwavidyalaya, Bhopal
Master of Engineering ( M.E.)1st Sem Digital Communication Syllabus
RGPV ME/ M.TECH DIGITAL COMM. VLSI DESIGN (MEDC-104) 
UNIT I 
Introduction: Basic concept of integrated circuits and manufacturing, Design fundamental for
digital CMOS circuits, Design Abstraction and circuit Validation.
 
UNIT II 

CMOS circuit and Logic Design: CMOS Logic gate design, Basic Physical design, CMOS Logic structure, I /O Structure, Power and Delay consideration.
UNIT III
System Design: CMOS Chip Design, standard cells, Programmable gate array, Design Capture,Simulation and Verification.
 
UNIT IV
Subsystem Design: Data Operation,CMOS Sub System Design,Memory and Control Strategies, PLA and ROM Implementation
 
UNIT V
CAD system and Algorithms:CAD systems,Layout Analysis,Placement and Routing Algorithms,Timing Analysis, Optimization, Logic Synthesis and Simulation,Testability Issues.
 
REFERENCE BOOKS: 

  • Principal Of Cmos Design: A System Prospective By Waste And Eshraghin
  • Vlsi Design: System On Silicon, Pearson Education
  • Vlsi Technology By Sze S.M. Tmh
  • Basic Vlsi Design, System And Circuits By Pucknil D.A. Phi
  • Vhdl Primer By Bhaskar Star Galax Pub.

DSP APPLICATION (MEDC-103)

Rajiv Gandhi Proudhyogiki Vishwavidyalaya, Bhopal 
Master of Engineering ( M.E.)1st Sem Digital Communication Syllabus
RGPV ME/ M.TECH DIGITAL COMM. DSP APPLICATION (MEDC-103)
UNIT I
Review of Discrete time signals:
sequences,representation. Discrete time systems: linear, time in variant, LTI systems, properties, and constant coefficients difference equations. Frequency Domain representation of discrete time signals and systems

UNIT II
Review of Z Transform – Properties, ROC, Stability, Causality, Criterion. Inverse Z Transform, Recursive and Non Recursive systems, Realization of discrete time system

UNIT III

DFT: Properties, Linear and Circular convolution,Discrete Cosine Transform, Relationship between DFT and DCT. Computation of DFT: FFT/Decimation in Time and Decimation in
Frequenc

UNIT IV
FIR and IIR systems:Basic structure of FIR and IIR,Bilinear Transformation, Design of Discrete time IIR filter-Butterworth ,Chebychev ,Inverse Chebychev,Elliptic etc.Design of FIR filters by windowing  – Rectangular ,Bartlett,Hann,Hamming,Kaiser, Window filter,Design method relationship of Kaiser to other window. Application of MATLAB for Design of Digital filter. Effect of Finite register length in filter Design

UNIT V
Discrete time Random signals:Discrete time random process,Averages,Spectrum Representation of finite energy signals,response of linear systems to random signals.power
spectrum estimation:Basic principals of spectrum estimation, estimate of auto con variance, power spectrum ,cross con variance and cross spectrum.Advance signal processing technique and transforms:multi rate signal processing-down sampling/up sampling, introduction to discrete Hilberts Transform, Wavelet Transform, Haar Transform etc.

REFERENCE BOOKS

  • Discrete time signal Processing by Opperenheim & Schaffer PHI 2nd Edition
  • Digital Signal Procesing using MATLAB by S.Mitra
  • Digital Signal Processing By Proakis Pearson Education
  • Theory & application of Digital Signal Processing by L.R.Rabiner & B. Gold PHI

MICRO CONTROLLER SYSTEM DESIGN (MEDC-102)

Rajiv Gandhi Proudhyogiki Vishwavidyalaya, Bhopal
Master of Engineering ( M.E.)1st Sem Digital Communication Syllabus
MICRO CONTROLLER SYSTEM DESIGN (MEDC-102)
UNIT I
Review of 8-Bit and 16-bit microprocessor, support chips and interfacing techniques, single chipmicro-computers, architecture, program and data memory, ports, input Output interfacing and programming,

UNIT II
Single chip micro controllers-INTEL 8051/ 8751,MOTOROLA 68HC0/68HC11 architecture, instruction set and programming, Memory mapping,addressing modes,Registers,expanded modes. Interrupt handling timing and serial I / O.

UNIT III
Software development Modular approach, integrated software development environment, Object oriented interfacing and programming, Recursion and debugging.

  UNIT IV
ATMEL 89C51 / 52 and PIC micro-Controllers- Case studies.Design and application of Micro-Controller in Data acquisition, Embedded controllers, Process control etc.

UNIT V
DSP Processor architecture and sample design using TI – DSP.

REFERENCE BOOKS:

  • Embedded Systems 8051 By Majidi & Majidi
  • Design With Micro-Controllers By John P. Peatman Tmh
  • Embedded Micro-Computers System By Jonathan W. Valvano
  • Data Manuals – Intel Motorola

ADVANCED MATHEMATICS (MEVD-101)

Rajiv Gandhi Proudhyogiki Vishwavidyalaya, Bhopal
Master of Engineering ( M.E.)
1st Sem Digital Communication Syllabus
RGPV ME/ M.TECH DIGITAL COMM. ADVANCED MATHEMATICS (MEVD-101) 
UNIT I 
Solution of Partial Differential Equation (PDE):by separation of variable method,numerical solution of PDE (Laplace,Poisson’s, Parabola) using finite difference methods,Elementary properties of FT, DFT, WFT, Wavelet transform, Haar transform.
 
UNIT II
Probability:compound probability and discrete random variable.Binomial, Normal,Poisson’s distribution. Sampling distribution,elementary concept of estimation and theory of hypothesis, recurred relations.

 
UNIT III
Stochastic process:Markov process transition probability transition probability matrix, just and higher order Markov process, Markov chain. Queuing system, transient and steady state,traffic intensity,distribution queuing system,concepts of queuing models (M/M/1:Infinity/ Infinity/ FC FS), (M/M/1: N/ Infinity/ FC FS), (M/M/S: Infinity/ Infinity/ FC FS)

 
UNIT IV
Operations of fuzzy sets:fuzzy arithmetic & relations,fuzzy relation equations,fuzzy logics. MATLAB introduction, programming in MATLAB scripts, functions and their application.

 
UNIT V
Introduction and definition of reliability:derivation of reliability functions, Failure rate,Hazard rate, mean time t future & their relations, concepts of fault tolerant analysis, Elementary idea about decision theory and goal programming.

 
REFERENCE BOOKS: 

  • Higher Engineering Mathematics by B.V. Ramana, Tata Mc Hill.
  • Advance Engineering Mathematics by Ervin Kreszig, Wiley Easten Edd.
  • Applied Numerical Methods with MATLAB by Steven C chapra, Tata Mc Graw Hill.
  • Introductory Methods of Numerical Analysis by S.S. Shastry,
  • Introduction of Numerical Analysis by Forberg
  • Numerical Solution of Differential Equation by M. K. Jain
  • Numerical Mathematical Analysis By James B. Scarborogh
  • Fourier Transforms by J. N. Sheddon
  • Fuzzy Logic in Engineering by T. J. Ross
  • Fuzzy Sets Theory & its Applications by H. J. Zimmersoms

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