Control systems

Module 4

syllabus

Nyquist stability criterion, Fundamentals and analysis,

Relative stability: gain margin and phase margin. Stability analysis with Bode plot,

Design of Compensators: Need of compensators, design of lag and lead compensators using Bode plots

Video Lectures

Introduction to Nyquist plot | simple Malayalam explanation | CS - Module 4 | Lect 63

Topics covered

Introduction to Nyquist plot simple Malayalam explanation

Nyquist plot - Problem -1 | Step by step solution in Malayalam | CS - Module 4 | Lect 64

Topics covered

Problem 1

Q1) The open loop transfer function of a feedback system is given 𝐺(𝑠)=(𝑠+2)/((𝑠+1)(π‘ βˆ’1)) . Sketch the Nyquist plot and determine the stability

Nyquist plot - Problem -2 | Step by step solution in Malayalam | CS - Module 4 | Lect 65

Topics covered

Problem 2 -

Draw the Nyquist plot for the system whose open loop transfer function is 𝐺(𝑠)𝐻(𝑠)=𝐾/(𝑠(𝑠+2)(𝑠+10)) . Determine the range of K for which closed loop system is stable

Introduction to Bode plot | Simple explanation in Malayalam | CS - Module 4 | Lect 66

Topics covered

Introduction to bode plot, Steps for plotting bode plot

Bode Plot - Problem -1 | Step by step explanation in Malayalam | CS - Module 4 | Lect 67

Topics covered

Bode Plot - Problem -1

Q1) Plot the Bode diagram for the following transfer function and obtain the gain and phase cross over frequency 𝐺(𝑠)=10/(𝑠(1+0.4𝑠)(1+0.1𝑠))

Bode Plot - Problem -2 | Step by step explanation in Malayalam | CS - Module 4 | Lect 68

Topics covered

Bode Plot - Problem -1

Q2) Plot the Bode diagram for the following transfer function 𝐺(𝑠)=(10(𝑠+100))/(𝑠(𝑠+5)(𝑠+2))

Introduction to compensators | Design steps for Lag & Lead compensators | CS - Module 4 | Lect 69

Topics covered

Introduction to compensators in control system, comparison between lag & lead compensators, design steps for lag and lead compensators using Bode plot

Lag Compensator Problem | Step by step solution | Explanation in Malayalam | CS - Module 4 | Lect 70

Topics covered

Lag Compensator Problem

Q1) A unity feedback system has an open loop transfer function 𝐺(𝑠)=𝐾/(𝑠(1+2𝑠)) . Design a suitable lag compensator so that phase margin is 400 and the steady state error for ramp input is less than or equal to 0.2

Lead Compensator Problem | Step by step solution in Malayalam | CS - Module 4 | Lect 71

Topics covered

Q1) Design a phase lead compensator for the system shown in figure to satisfy the following specifications (i) Phase margin of the system β‰₯ 450 (ii) Steady state error for a unit ramp input ≀ 1/15 (iii) The gain cross over frequency of the system must be less than 7.5 rad/sec