EEE F242 Control Systems
Lecture Notes & Slides78
[Lecture 12] Time response (2)
[Lecture 1] Introduction (2)
[Lecture 33] Design of compensators
[Lecture 30] Bode plots
[Lecture 33] 40 Controllability and Observability AB
[Lecture 27] 35 Compensators AB
[Lecture 23] 31 Control System Lecture23AB
[Lecture 22] 30 Control System Lecture22AB
[Lecture] 22 Steady State Errors
[Lecture 21] 29 Control System Lecture21AB
[Lecture] 02 Open and Closed Loop Control Systems
[Lecture] 04 Modeling
[Lecture 26] 34 Bode Plot2 AB
[Lecture] 09 Block Diagram
[Lecture 29] 37 Polar Plot and Nyquist Plot AB
[Lecture 28] 36 Compensators Design and Polar Plot AB
[Lecture] 07 Mechanical Systems
[Lecture 25] 33 Bode Plot1 AB
[Lecture] 26 Concept of Stability
[Lecture] 17 Time Response, pole, zero
[Lecture] 18 First Order System
[Lecture] 24 PID Control
[Lecture] 10 Problems
[Lecture] 28 Routh Hurwitz Criterion(2)
[Lecture] 19 Second Order Systems
[Lecture 30] 38 Nyquist Plot2 AB
[Lecture] 08 Electromechanical System
[Lecture] 16 Feedback Characteristics of Control Systems
[Lecture] 20 Second Order Systems 2
[Lecture] 27 Routh Hurwitz Criterion
[Lecture] 06 Operational Amplifier
[Lecture] 21 Second Order Systems 3
[Lecture 2] Laplace Transform
[Lecture] 14 SFGs
[Lecture]
[Lecture 32] State Space Analysis Class Edited
[Lecture 31] Introduction to State Space Class Edited
[Lecture 13] Time response
[Lecture 20] Routh Criteria
[Lecture 27] Compensators Class Edited
[Lecture 35] Problem on State Space Class Edited
[Lecture 26] Bode Plot and GM PM Class Edited
[Lecture 10] Feedback Characteristics
[Lecture 8] Block reduction
[Lecture 6] Modeling
[Lecture] 03 Control Objective and Goals
[Lecture] 23 Steady State Error Problems
[Lecture] 05 Transfer function, electrical circuits
[Lecture] 15 SFGs (2)
[Lecture] 11 Problems on mechanics
[Lecture 24] 32 Frequency Response AB
[Lecture 21] Root Locus Technique
[Lecture 25] Bode Plot
[Lecture 29] Polar Plot and Nyquist Plot Class Edited
[Lecture 19] Routh Criteria
[Lecture 34] Stability and Controller Design Class Edited
[Lecture 1] Introduction
[Lecture 33] Controllability, Observability and CCF Class Edited
[Lecture 11] Control System Components
[Lecture 14] Time response
[Lecture 22] Refining Root Locus
[Lecture 30] Relative Stability Using Nyquist Plot Class Edited
[Lecture 9] Signal flow graphs
[Lecture 18] post mids till rlocus
[Lecture] 25 Time Response Miscellaneous
[Lecture 11] 1 notes Dr Joyjit MukherjeeFile
[Lecture] 12 Block Diagram MIMO system
[Lecture 34] 41 Stability using state space AB
[Lecture] 13 Electrical Constants
[Lecture 32] 39 State Space AB
[Lecture 23] Control Design using Root Locus
[Lecture 12] Time response
[Lecture 24] Frequency Response
[Lecture 19] Routh Hurwitz Criterion Cont
[Lecture 12] Time Domain Response Cont
[Lecture 3] Modeling
[Lecture] (3)
[Lecture] (2)
Previous Year Questions27
[Midsem] Control systems 23 Q mid exam
[Sem2][Quiz 3] 220425 220120 220425 220348
[Sem2][Quiz 2]
[Sem2][Quiz] Make up
[Sem2][Compre] A 220511 222850
[Sem2][Compre] A set II 220511 224628
[Sem2][Midsem] Paper
[Sem2][Compre] Part B
[Midsem]
[Exam] Detailed (Sol)
[Exam] PD Control 10 (2)
[Exam] Routh Hurwitz 20 (2)
[Exam] (2) (Sol)
[Quiz 1] (Sol) (2)
[Exam] Part A Set I Detailed (Sol)
[Exam] (Sol)
[Midsem] (Sol)
[Midsem] (Sol) (2)
[Midsem] 21 22 Solns
[Quiz 2] 23
[Exam] Routh Hurwitz 20
[Exam] Quiz2 21
[Quiz 1] (Sol)
[Midsem] 23 24 (Sol)
[Exam] PD Control 10
[Exam] (1) (Sol)
[Quiz 1]
Tutorials18
[Sem1][Tutorial 1]
[Tutorial 11] CS
[Tutorial 7] CS
[Tutorial 8] CS
[Tutorial 1]
[Tutorial 6]
[Tutorial] Answers 1 7
[Tutorial 7]
[Tutorial 2]
[Tutorial 5] (2)
[Tutorial 6] Understanding Force and Natural Responses (Sol)
[Tutorial 6] Steady State Error, and Initial Values (Sol)
[Tutorial 2] (2)
[Tutorial 5]
[Tutorial 10] Problems
[Tutorial 9]
[Tutorial 10] (Sol)
[Tutorial] 8 (Sol)
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