MATLAB for control engineers
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ISBN:9787121195280
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简介
尾形克彦等编著的《控制理论MATLAB教程(英文版)》系统讲述基于MATLAB的控制系统分析和设计方法。全书共7章。第1章总体介绍了MATLAB的基本命令;第2章介绍了MATLAB分析和设计控制系统的预备知识;第3章讨论了如何应用MATLAB获得动态系统的瞬态响应;第4章和第5章分别讲解了如何运用MATLAB进行根轨迹和频域方法的分析和设计;第6章讨论了如何通过MATLAB处理状态空间极点配置和观测器设计问题;第7章提供了控制系统设计中最优参数组的选取方法及二次型最优控制器的求解方法。
《控制理论MATLAB教程(英文版)》的主要读者为自动化专业的本科生、控制科学与工程专业的研究生和从事控制领域工作的科研人员和工程师。
目录
Preface
Chapter 1 Introduction to MATLAB
1-1 Introduction
1-2 Addition, Subtraction, Multiplication, and Division with MATLAB
1-3 Computing Matrix Functions
1-4 Plotting Response Curves
1-5 Three-Dimensional Plots
1-6 Drawing Geometrical Figures with MATLAB
Chapter 2 Preliminary Study of MATLAB Analysis of Dynamic Systems
2-1 Partial-Fraction Expansion with MATLAB
2-2 Transformation of Mathematical Models of Dynamic Systems
2-3 MATLAB Representation of Systems in Block Diagram Form
Chapter 3 Transient-Response Analysis
3-1 Introduction
3-2 Step Response
3-3 Impulse Response
3-4 Ramp Response
3-5 Response to Arbitrary Input
3-6 Response to Arbitrary Initial Condition
3-7 Three-Dimensional Plots
Chapter 4 Root-Locus Analysis
4-1 Introduction
4-2 Root Locus Plots with Polar Grids
4-3 Finding the Gain Value K at an Arbitrary Point on the Root Locus
4-4 Root-Locus Plots of Non-Minimum-Phase Systems
4-5 Root-Locus Plots of Conditionally Stable Systems
4-6 Root Loci for Systems with Transport Lag
4-7 Root-Locus Approach to Control Systems Compensation
Chapter 5 Frequency-Response Analysis
5-1 Plotting Bode Diagrams with MATLAB
5-2 Plotting Nyquist Diagrams with MATLAB
5-3 Log-Magnitude-Versus-Phase Plots
5-4 Phase Margin and Gain Margin 262
5-5 Frequency-Response Approach to Control Systems Compensation
Chapter 6 MATLAB Approach to the State-Space Design of Control Systems
6-1 Introduction
6-2 Controllability and Observability
6-3 Pole Placement
6-4 Solving Pole-Placement Problems with MATLAB
6-5 Design of State Observers with MATLAB
6-6 Minimum-Order Observers
6-7 Observer Controllers
Chapter 7 Some Optimization Problems Solved with MATLAB
7-1 Computational Approach to Obtaining Optimal Sets of Parameter Values
7-2 Solving Quadratic Optimal Control Problems with MATLAB
Appendix
References
Index
Chapter 1 Introduction to MATLAB
1-1 Introduction
1-2 Addition, Subtraction, Multiplication, and Division with MATLAB
1-3 Computing Matrix Functions
1-4 Plotting Response Curves
1-5 Three-Dimensional Plots
1-6 Drawing Geometrical Figures with MATLAB
Chapter 2 Preliminary Study of MATLAB Analysis of Dynamic Systems
2-1 Partial-Fraction Expansion with MATLAB
2-2 Transformation of Mathematical Models of Dynamic Systems
2-3 MATLAB Representation of Systems in Block Diagram Form
Chapter 3 Transient-Response Analysis
3-1 Introduction
3-2 Step Response
3-3 Impulse Response
3-4 Ramp Response
3-5 Response to Arbitrary Input
3-6 Response to Arbitrary Initial Condition
3-7 Three-Dimensional Plots
Chapter 4 Root-Locus Analysis
4-1 Introduction
4-2 Root Locus Plots with Polar Grids
4-3 Finding the Gain Value K at an Arbitrary Point on the Root Locus
4-4 Root-Locus Plots of Non-Minimum-Phase Systems
4-5 Root-Locus Plots of Conditionally Stable Systems
4-6 Root Loci for Systems with Transport Lag
4-7 Root-Locus Approach to Control Systems Compensation
Chapter 5 Frequency-Response Analysis
5-1 Plotting Bode Diagrams with MATLAB
5-2 Plotting Nyquist Diagrams with MATLAB
5-3 Log-Magnitude-Versus-Phase Plots
5-4 Phase Margin and Gain Margin 262
5-5 Frequency-Response Approach to Control Systems Compensation
Chapter 6 MATLAB Approach to the State-Space Design of Control Systems
6-1 Introduction
6-2 Controllability and Observability
6-3 Pole Placement
6-4 Solving Pole-Placement Problems with MATLAB
6-5 Design of State Observers with MATLAB
6-6 Minimum-Order Observers
6-7 Observer Controllers
Chapter 7 Some Optimization Problems Solved with MATLAB
7-1 Computational Approach to Obtaining Optimal Sets of Parameter Values
7-2 Solving Quadratic Optimal Control Problems with MATLAB
Appendix
References
Index
MATLAB for control engineers
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