Control System Engineering syllabus

2019 PATTERN. This is the 2019 pattern syllabus, the latest SPPU has published on its site for Third Year Electrical Engineering. A 2024 pattern syllabus for this year has not been published there yet, so confirm with your college which pattern applies to you.

303150 · Third Year Electrical Engineering, SPPU 2019 pattern. Every unit, the marks scheme, course outcomes and books, copied from the official syllabus PDF.

3031503 h/week theoryISE 30 + End-sem 70
06.units
03.credits

Unit-wise syllabus

UNIT I

Basics of Control System

7 hours

Basic concepts of control system, classification of control systems, types of control system: feedback, tracking, regulator system, feed forward system, transfer function, concept of pole and zero, modeling of Electrical and Mechanical systems (Only series linear and rotary motion) using differential equations and transfer function , analogy between electrical and mechanical systems, block diagram algebra, signal flow graph, Mason’s gain formula.

UNIT II

Time domain analysis

6 hours

Concept of transient and steady state response, standard test signals: step, ramp, parabolic and impulse signal, type and order of control system, time response of first and second order systems to unit impulse, unit step input, time domain specifications of second order systems, derivation of time domain specifications for second-order under-damped system for unit step input, steady state error and static error coefficients.

UNIT III

Stability analysis and Root Locus

5 hours

Concept of stability: BIBO, nature of system response for various locations of poles in S-plane. Routh’s-Hurwitz criterion. Root Locus: Angle and magnitude condition, Basic properties of root locus. Construction of root locus, Stability analysis using root locus.

UNIT IV

Frequency domain analysis-I

6 hours

Introduction, Frequency domain specifications, correlation between time and frequency domain specifications, polar Plot, Nyquist plot, stability analysis using Nyquist plot.

UNIT V

Frequency domain analysis-II

6 hours

05 Introduction to Bode plot, Asymptotic approximation: sketching of Bode plot, stability analysis using Bode plot.

UNIT VI

PID controllers and Control system components

6 hours

Basic concept of P, PI, PID controller, design specifications in time domain and frequency domain. design of PID controller by Root Locus, tuning of PID controllers using Ziegler-Nichol Methods Control System Components: Working principle and transfer function of Lag network, lead network, potentiometer, DC servo motors.

Marks and credits

HeadMarksCredit
ISE (mid-semester exam)303
End-semester exam70

Course outcomes

  1. CO1Construct mathematical model of Electrical and Mechanical system using differential equations and transfer function and develop analogy between Electrical and Mechanical systems.
  2. CO2Determine time response of systems for a given input and perform analysis of first and second order systems using time domain specifications.
  3. CO3Investigate closed loop stability of system in s-plane using Routh Hurwitz stability criteria and root locus.
  4. CO4Analyze the systems in frequency domain and investigate stability using Nyquist plot and Bode plot
  5. CO5Design PID controller for a given plant to meet desired time domain specifications.

Books

Text books

Reference books

FAQ

How many units are in Control System Engineering?

Control System Engineering (303150) has 6 units: Unit I Basics of Control System (7 h); Unit II Time domain analysis (6 h); Unit III Stability analysis and Root Locus (5 h); Unit IV Frequency domain analysis-I (6 h); Unit V Frequency domain analysis-II (6 h); Unit VI PID controllers and Control system components (6 h).

What is the marks scheme for Control System Engineering?

The official Electrical Engineering 2019 pattern syllabus lists mid-semester (ISE) for 30 marks and the end-semester exam for 70 marks, for 3 credits.