Lesson Plan Cs

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    P.A. COLLEGE OF ENGINEERING AND TECHNOLOGY

    PALLADAM ROAD, POLLACHI, COIMBATORE - 642 002.Department of PG - Electrical Sciences

    LECTURE PLAN

    Course Code & Name : EC2255 / CONTROL SYSTEMSFaculty : P.MARIARAJA / Assistant Professor

    Class & Semester : II Year / IV SemesterSl.No.

    PROPOSEDTOPIC

    DATE PERIODUNIT I CONTROL SYSTEM MODELING

    1 20.12.13 03 Introduction

    2 20.12.13 08 Basic Elements of Control System Open loop and Closed loop systems

    3 21.12.13 02 Differential equation - Transfer function

    4 23.12.13 03 Modeling of Electric systems

    5 24.12.13 01 Translational mechanical systems

    6 27.12.13 03 Rotational mechanical systems

    7 27.12.13 08 Block diagram reduction Techniques

    8 30.12.13 03 Block diagram reduction Techniques

    9 31.12.13 01 Block diagram reduction Techniques

    10 03.01.14 03 Signal flow graph

    11 03.01.14 08 Signal flow graph

    12 04.01.14 02 Signal flow graph

    UNIT II TIME RESPONSE ANALYSIS

    13 06.01.14 03 Time response analysis

    14 07.01.14 01 First Order Systems15 10.01.14 03 Impulse and Step Response analysis of second order systems

    16 10.01.14 08 Impulse and Step Response analysis of second order systems

    17 11.01.14 02 Impulse and Step Response analysis of second order systems

    18 20.01.14 03 Steady state errors

    19 21.01.14 01 P and PI Compensation

    20 24.01.14 03 PD Compensation

    21 24.01.14 08 PID Compensation

    22 25.01.14 02 Analysis using MATLAB

    CYCLE TEST I (27.01.14 - 29.01.14)

    UNIT III FREQUENCY RESPONSE ANALYSIS

    23 31.01.14 03 Frequency Response - Bode Plot

    24 31.01.14 08 Bode Plot

    25 01.02.14 02 Polar Plot

    26 03.02.14 03 Polar Plot

    27 04.02.14 01 Nyquist Plot

    28 07.02.14 03 Nyquist Plot

    AC-04Rev.00

    13.12.13

  • 8/11/2019 Lesson Plan Cs

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    P.A. COLLEGE OF ENGINEERING AND TECHNOLOGY

    PALLADAM ROAD, POLLACHI, COIMBATORE - 642 002.Department of PG - Electrical Sciences

    29 07.02.14 08 Frequency Domain specifications from the plots

    30 10.02.14 03 Constant M and N Circles

    31 11.02.14 01 Nichols Chart - Use of Nichols Chart in Control System Analysis

    32 14.02.14 03 Series, Parallel, series-parallel Compensators

    33 14.02.14 08 Lead, Lag, and Lead Lag Compensators

    34 15.02.14 02 Analysis using MATLAB.

    UNIT IV STABILITY ANALYSIS

    35 17.02.14 03 Stability

    36 18.02.14 01 Routh-Hurwitz Criterion

    37 21.02.14 03 Routh-Hurwitz Criterion

    38 21.02.14 08 Root Locus Technique

    39 24.02.14 03 Root Locus Technique

    40 25.02.14 01 Construction of Root Locus, Stability41 28.01.14 03 Dominant Poles, Application of Root Locus Diagram

    42 28.01.14 08 Nyquist Stability Criterion

    43 01.03.14 02 Relative Stability

    CYCLE TEST II (03.03.14 05.03.14)

    44 07.03.14 03 Analysis using MATLAB

    UNIT V STATE VARIABLE ANALYSIS & DIGITAL CONTROL SYSTEMS

    45 07.03.14 08 State space representation of Continuous Time systems

    46 10.03.14 03 State equations

    47 11.03.14 01 Transfer function from State Variable Representation

    48 14.03.14 03 Solutions of the state equations

    49 14.03.14 08 Concepts of Controllability and Observability

    50 15.03.14 02 Concepts of Controllability and Observability

    51 17.03.14 03 State space representation for Discrete time systems

    52 18.03.14 01 Sampled Data control systems

    53 21.03.14 03 Sampling Theorem Sample & Hold

    54 21.03.14 08 Open loop & Closed loop sampled data systems

    CYCLE TEST III ( 15.04.14 17.04.14)

    Faculty in- charge HOD PRINCIPAL