Performance of Second Order Systems

Slides:



Advertisements
Similar presentations
Chapter 5 – The Performance of Feedback Control Systems
Advertisements

The Performance of Feedback Control Systems
4. System Response This module is concern with the response of LTI system. L.T. is used to investigate the response of first and second order systems.
Chapter 5 – The Performance of Feedback Control Systems
Lect15EEE 2021 Systems Concepts Dr. Holbert March 19, 2008.
The Laplace Transform in Circuit Analysis
Lesson 3 Signals and systems Linear system. Meiling CHEN2 (1) Unit step function Shift a Linear system.
Control Systems – a quick introduction 1 Or, “this one goes to 11.”
Automatic control by Meiling CHEN
Transient and steady state response (cont.)
Transient & Steady State Response Analysis
Lecture 181 EEE 302 Electrical Networks II Dr. Keith E. Holbert Summer 2001.
Review last lectures.
Chapter 3 1 Laplace Transforms 1. Standard notation in dynamics and control (shorthand notation) 2. Converts mathematics to algebraic operations 3. Advantageous.
ECE 8443 – Pattern Recognition EE 3512 – Signals: Continuous and Discrete Objectives: First-Order Second-Order N th -Order Computation of the Output Signal.
سیستمهای کنترل خطی پاییز 1389 بسم ا... الرحمن الرحيم دکتر حسين بلندي- دکتر سید مجید اسما عیل زاده.
Feedback Control Systems (FCS) Dr. Imtiaz Hussain URL :
ECE 8443 – Pattern Recognition ECE 3163 – Signals and Systems Objectives: First-Order Second-Order N th -Order Computation of the Output Signal Transfer.
Chapter 5 Transient and Steady State Response “I will study and get ready and someday my chance will come” Abraham Lincoln.
Chapter 6: Sampled Data Systems and the z-Transform 1.
Fundamentals of Electric Circuits Chapter 16 Copyright © The McGraw-Hill Companies, Inc. Permission required for reproduction or display.
Chapter 6: Frequency Domain Anaysis
Using Partial Fraction Expansion
Lecture 12: First-Order Systems
THE LAPLACE TRANSFORM AND TRANSFER FUNCTIONS1 / 11 THE LAPLACE TRANSFORM AND TRANSFER FUNCTIONS Prof Kang Li
1 Steady-State Error M. Sami Fadali Professor of Electrical Engineering University of Nevada.
Lecture 5\6 Analysis in the time domain (I) —First-order system North China Electric Power University Sun Hairong.
ELECTRIC CIRCUITS EIGHTH EDITION
Birla Vishvakarma Mahavidyalaya Gujarat Technological University
Page : PID Controller Chapter 3 Design of Discrete- Time control systems PID C ontroller.
Modern Control System EKT 308
Control Response Patterns
Chapter 4 Feedback Control System Characteristics
Office Room: H116 Lab. : H830-1 Telephone: 4100
Digital and Non-Linear Control
Control Systems (CS) Lecture-12-13
Feedback Control Systems (FCS)
Fundamentals of Electric Circuits Chapter 16
Chapter 4: Feedback Control System Characteristics Objectives
Feedback Control Systems (FCS)
Steady-State Errors System & Control Engineering Lab.
BDU20303 Electromechanical & Control System Sem I 11/12 Chapter 3: Time Response Analysis (First Order System)
Signals and Systems Using MATLAB Luis F. Chaparro
Parabolic Input: R(t) t (s) (Parabolic input error coefficient)
Dynamic Response Steady State Response: the part of resp. when t→∞
Unit-Ramp Response System & Control Engineering Lab.
Time Response System & Control Engineering Lab.
State Space Method.
Control Response Patterns
UNIVERSITI MALAYSIA PERLIS SCHOOL OF ELECTRICAL SYSTEM ENGINEERING
دکتر حسين بلندي- دکتر سید مجید اسما عیل زاده
E(s): Laplace transform of the error e(t)
Feedback Control Systems (FCS)
The characteristics of actual input signals are a sudden shock, a sudden change, a constant velocity, and constant acceleration. The dynamic behavior of.
Control Systems (CS) Lecture-6 Steady State Error
Y(s).
Response of Higher Order Systems
Control Systems (CS) Lecture-16 Steady State Error Dr. Imtiaz Hussain
Example 1: Find the magnitude and phase angle of
Introduction: How to use Audacity to generate and analyze a signal.
Unit-Impulse Response
Lecture 6: Time Domain Analysis and State Space Representation
Chapter 2. Mathematical Foundation
HOMEWORK-03 Problem Kuo-95 (p. 377)
Laplace Transforms Important analytical method for solving linear ordinary differential equations. - Application to nonlinear ODEs? Must linearize first.
3. Steady State Error and Time Response Performance
Laplace Transforms Important analytical method for solving linear ordinary differential equations. - Application to nonlinear ODEs? Must linearize first.
Chapter 5 – The Performance of Feedback Control Systems
Exercise 1 For the unit step response shown in the following figure, find the transfer function of the system. Also find rise time and settling time. Solution.
By: Nafees Ahamad, AP, EECE, Dept. DIT University, Dehradun
Presentation transcript:

Performance of Second Order Systems

Why Consider Second Order Systems There are two main aspects in Control System design Design using a highly accurate model Taking care of all minor details Considering all elements in the system The Controller based on highly accurate model maybe very complex

Design using performance specifications The controller can be designed based on the desired performance specifications. Instead of considering the exact model of the system the response is considered. The system response of second order system can reflect in general the response of even higher order systems.

The Time Response the transient response disappears with time the steady-state response exists a long time after input is applied

Transient and Steady State Transient Response Steady State Response

Test Input Signals

Step Input

Ramp input

Parabolic Input

Input Signals Summary Test Signals Purpose Impulse stability test Step transient response test Ramp tracking capability test Parabolic faster tracking capability test

How to find the response analytically For a given transfer function, the response can be found easily by taking the Laplace inverse of the Product of the input and the transfer function

How to find…. Example

response

Step Response