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Syllabus: Control Systems (GATE EE) - Electrical Engineering (EE) PDF Download

Control System Engineering is one of the famous and highest scoring subjects in the GATE, and this EduRev document aims to discuss various means that can help you prepare for control systems for GATE 2023.
Candidates who have a appeared in GATE with Control Systems as one of the main subjects, have often complained about the complexity of the problems and the numerical questions. Hence, it is one of the areas that need maximum preparation for you to excel and qualify the exam with flying colors.

Syllabus: Control Systems (GATE EE) - Electrical Engineering (EE)

Control System

1. Basics of Control System and Transfer Function

  • Open loop and Closed loop Systems
  • Laplace Transformation
  • Transfer function
  • Poles and Zeros
  • Properties of TF
  • Mathematical Modeling of systems

2. Block Diagram and Signal flow Graphs

  • Block Diagrams
  • Block diagram reduction rules
  • Signal Flow graph
  • Mason's gain formula

3. Time Response Analysis

  • Analysis of first order system
  • Unit impulse response of 2nd order system
  • Step Response of 2nd order system
  • Time Domain parameters of 1st and 2nd order system
  • Steady-state errors and error constants

4. Routh-Hurwitz Stability

  • The concept of stability
  • Necessary conditions for stability
  • Hurwitz Stability criterion
  • Routh Stability criterion
  • Relative Stability Analysis

5. The Root Locus Technique

  • Root Locus Diagram
  • Rules for Sketching Root Locus
  • Angle of Departure and Arrival
  • Concept of Complementary Root Locus
  • Effect of addition of poles & zeros on Root Locus

6. Frequency Domain Analysis(polar, Bode, Nyquist Plot)

  • Correlation between time and freq. response
  • Polar plots
  • Bode plots
  • Nyquist Stability Criterion
  • Frequency response analysis of second order control system

7. State Space Analysis

  • State space representation of control system
  • Solution of state space equation
  • Controllability and Observability
  • State Variable Representation of Electrical Network

8. Controllers & Compensators

  • Lag Compensator
  • Lead Compensator
  • Lag-Lead Compensator
  • Lead-Lag Compensator
  • On-Off Controller
  • Proportional Controller
  • Derivative Controller
  • Proportional Derivative (PD) Controller
  • Integral Controller
  • Proportional Integral (PI) Controller
  • PID Controller
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