Showing posts with label RGTU ECE SYYLABUUS. Show all posts
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META TAGS:-RGTU EC 4TH SEM SYLLABUS I ELECTRONICS AND COMMUNICATION 4TH SEM SYLLABUS I RGPV EC 4TH SEM CONTROL SYSTEM SYLLABUS I RGTU EC 4TH SEM CONTROL SYSTEM SYLLABUS I DOWNLOAD RGPV EC 4TH SEM SYLLABUS I CONTROL SYSTEM SYLLABUS I EC-402 CONTROL SYSTEM SYLLABUS I RGTU CONTROL SYSTEM SYLLABUS I RGPV EC 4TH SEM CONTROL SYSTEM SYLLABUS I RGPV EC 4TH SEM CONTROL SYSTEM SYLLABUS I RGPV ELECTRONICS AND COMMUNICATION 4TH SEM SYLLABUS 
RAJIV GANDHI PROUDYOGIKI VISHWAVIDYALAYA, BHOPAL
PROGRAMME: ELECTRONICS AND COMMUNICATION   
CONTROL SYSTEMS  EC-402
UNIT I
Basic Control System Terminology and Classification of control System,Examples of control System ,Transfer Function of Linear Control System, Block Diagram Representation, Signal flow Graph Techniques.
Mathematical Modeling of Electrical Network: AC and DC Servomotors, Error Detector, Stepper Motor, Optical Encoder, Linearization.

UNIT II

Sensitivity of control Systems:Effects of Feedback on gain and time constant,pole location, bandwidth,Sensitivity,Stability,Disturbance signal,Control over System Dynamics by use of Feedback.
Time Response Analysis- Standard Test Signals,Time Response of 1st Order System, Model of Prototype DC Position Control System, Time Response of Prototype 2nd Order System Performance Specification of 2nd Order System, Steady-State Errors and Error Constants, Effects of Additions of Poles and Zeros to Open Loop and Closed Loop System, Design Specification of 2nd Order System and Higher-Order System, Performance Indices, Optimal Control System.

UNIT III 

Time Domain Stability Analysis-Concept of Stability of Linear Systems,Effects of Location of Poles on Stability, Necessary Conditions for Stability, Routh-Hurwitz Stability Criteria,Relative Stability Analysis,Root Locus Concept,Guidelines for Sketching Root-Locus,Frequency Domain Stability Analysis-Performance Specification in Frequency Domain,Co-relation between frequency Domain an Time Domain,Bode Plot, Minimum-Phase and Non-Minimum Phase System,Polar Plots,Inverse Polar Plot,Nyquist Stability Criterion, Assessment of Relative Stability (Phase Margin, Gain Margin and Stability), Constant-M and N Circle, Nichols Chart.

UNIT IV 

Approaches to System Design:Types of Compensation,Design of Phase-Lag, Phase Lead and Phase Lead-Lag Compensators in Time and Frequency Domain, Proportional, Derivative, Integral and PID Compensation.

UNIT V
Concept of State,State Variables and State Model:State Space Representation of Systems, Block Diagram for State Equation,Transfer Function Decomposition,Solution of State Equation, Transfer Matrix, Relationship between State Equation and Transfer Function, Controllability and Observability.

REFERENCE BOOKS:
  • B. C Kuo : Automatic Control System, Prentice Hall of India, New Delhi.
  • Nagrath and Gopal : Control System Engineering, New Age International Publishers.
  • Samarjit Ghose : Control Systems Theory and Applications, Pearson Education
  • Distefano; Feedback and Control System (Schaum); TMH
  • B. S. Manke : Linear Control System (with MATLAB Application), Khanna Publishers.
  • Ogata : Modern Control Engineering, PHI
  • AK Mandal : An introduction to Control Engineering – Modeling, Analysis and Design, New Age International Publishers

R.G.P.V.  BHOPAL
ELECTRONICS & COMMUNICATION4TH SEM
COMPUTER SYSTEM ORGANIZATION EC-401
UNIT I
Computer Basics and CPU:Von Newman model,various subsystems,CPU, Memory, I/O, System Bus,CPU and Memory registers,Program Counter, Accumulator,Instruction register, Micro operations,Register Transfer Language, Instruction Fetch, decode and execution,data movement and manipulation, Instruction formats and addressing modes of basic computer.8085 microprocessor organization

UNIT II
Control Unit Organization: Hardwired control unit, Micro and nano programmed control unit, Control Memory,Address Sequencing,Micro Instruction formats,Micro program sequencer Micro programming,
Arithmetic and Logic Unit:Arithmetic Processor,Addition,subtraction,multiplication & division, Floating point and decimal arithmetic and arithmetic units,design of arithmetic unit.

UNIT III
Input Output Organization:Modes of data transfer –program controlled, interrupt driven and direct memory access,Interrupt structures,I/O Interface,Asynchronous data transfer,I/O processor ,8085 I/O structure,8085 instruction set and basic programming.Data transfer –Serial / parallel , synchronous / asynchronous, simplex/half duplex and full duplex.

UNIT IV
Memory organization:Memory Maps, Memory Hierarchy, Cache Memory -Organization and mappings. Associative memory, Virtual memory, Memory Management Hardware.

UNIT V
Multiprocessors:Pipeline and Vector processing,Instruction and arithmetic pipelines,Vector and array processors, Interconnection structure and inter-processor communication.
 
REFERENCE BOOKS
  • Morris Mano: Computer System Architecture, PHI.
  • Gaonkar: Microprocessor Architecture, Programming, Applications with 8085; Penram Int.
  • William Stallings: Computer Organization and Architecture, PHI
  • Carter; Computer Architecture (Schaum); TMH
  • Carl Hamacher: Computer Organization, TMH
  • Tanenbaum: Structured Computer Organization, Pearson Education
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    RGPV 8TH SEM SYLLABUS FOR MICROWAVE CIRCUITS (EC-8302)


    RAJIV GANDHI PROUDYOGIKI VISHWAVIDYALAYA, BHOPAL
    PROGRAMME: ELECTRONICS AND COMMUNICATION
    COURSE: EC-8102 MICROWAVE CIRCUITS


    Unit I

    Transmission lines:
    Impedance matching and transformation
    Plane Electromagnetic waves, Transmission Lines:
    Line Equations and analysis, Smith Chart, Impedance Matching and transformation,single stub, double stub matching ,triple –stub tuner, impedance mismatch factor, quarter wave transformer, theory of small reflections,binomial and Chebyshev transformer, tapered transmission lines, triangular, exponential and Klopfenstein taper.

    Unit II

    Field analysis of transmission lines:
    Analysis of general transmission line and terminated transmission line circuits,Planar Transmission lines, Microstrip lines.
    Strip lines:
    Characteristic Impedance, conductor losses, Dielectric losses, Radiation Losses, Higher order modes and dispersion,Microstrip attenuation ,high frequency properties , suspended and inverted microstrip lines, coplanar lines, slot lines, Fin-lines, Coupled,Lines. Substrates for microwave printed circuits.

    Unit III

    Microwave (solid state) Amplifiers:
    BJT and FET, Power gains: definitions, Stability:
    stability circles, tests for unconditional stability, Constant Power Gain Circles,Constant Mismatch Circles, Single stage and multi stage transistor Amplifier design, Broadband transistor Amplifier Design, Power amplifiers. Basic Noise theory, Low noise amplifier designs, Microwave amplifier designs using Sij parameters.

    Unit IV

    Microwave oscillators and mixers:
    RF oscillators, Microwave oscillators, Oscillators Phase Noise, Frequency Multipliers, Gunn oscillators and circuits,Transistor oscillators, Oscillator circuits and design.
    Mixers:

    Mixer characteristics, linear and non-linear mixer operation, Mixer noise figure, Balanced mixers, Single ended diode mixer,single ended FET mixer, image reject mixers, other mixers, Mixer analysis using Harmonic Balancing.

    Unit V

    Microwave Filters:
    Periodic structures: analysis, Filter design : image parameter and insertion loss method. specification of power loss ratio,Filter transformations, Filter Implementations, Stepped-Impedance low –pass filters, coupled line filters, Filters using coupled resonators, Impedance and Admittance inverters, micro strip half-wave filter, Quarter –wave coupled cavity filters, direct –coupled
    cavity filters, Low-Pass filter designs, Frequency transformations and expansions, Narrowband and wideband microwave filters.

    References Books:
    1. R. E. Collin: Foundations for Microwave Engineering, 2nd Edition, Wiley India Pvt. Ltd.
    2. D. M. Pozar: Microwave Engineering, 3rd Edition, Wiley India Pvt. Ltd.
    3. P. A. Rizzi: Microwave Engineering- Passive Circuits.


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