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1 7.1 The Feature of Integrating Systems 2 7.2 H∞ PID Controllers for Integrating Plants 3 7.3 H2 PID Controllers for Integrating Plants 4 7.4 Controller Design for General Integrating Plants 5 7.5 Maclaurin PID Controllers for Integrating Plants 6 7.6 Best Achievable Performance of a PID Controllers
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1 6.1 The Quasi-H∞ Smith Predictor 2 6.2 The H2 Optimal Controller and the Smith Predictor 3 6.3 Equivalents of the Optimal Controller 4 6.4 The PID Controller and High-Order Controllers 5 6.5 Choice of Weighting Functions 6 6.6 Simplified Tuning for Quantitative Robustness
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1 5.1 H2 PID Controllers for the First-Order Plant 2 5.2 Quantitative Tuning of H2 PID Controllers 3 5.3 H2 PID Controllers for the Second-Order Plant 4 5.4 Control of Inverse Response Processes 5 5.5 PID Controllers Based on the Maclaurin Series Expansion 6 5.6 PID Controllers with the Best Achievable Performance 7 5.7 Choice of the Filter
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1 4.1 Traditional Design Methods 2 4.2 H∞ PID Controllers for the First-Order Plant 3 4.3 H∞ PID controller and the Smith Predictor 4 4.4 Quantitative Performance and Robustness 5 4.5 H∞ PID Controllers for the Second-Order Plant 6 4.6 All Stabilizing PID Controllers for Stable Plants
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1 3.1 Norms and System Gains 2 3.2 Internal Stability and Performance 3 3.3 Controller Parameterization 4 3.4 Robust Stability and Robust Performance 5 3.5 Robustness of Systems with Time Delays
文档格式:PDF 文档大小:1.71MB 文档页数:87
1 2.1 Process Dynamic Responses 2 2.2 Rational Approximations for Time Delay 3 2.3 Time Domain Performance Indices 4 2.4 Frequency Response Analysis 5 2.5 Transformation of Two Commonly Used Models 6 2.6 Design Requirements and Method Comparison
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1 1.1 A Brief History of Control Theory 2 1.2 Design of Feedback Control Systems 3 1.3 Consideration on Control System Design 4 1.4 What This Book is About 5 References for Reading
文档格式:PPT 文档大小:247KB 文档页数:28
第六章数学基础:多项式矩阵理论 一些基本概念(6,1,6.2,6.3,6.4,6.5,6.6)多项式: 1多项式多项式矩阵:元为多项式的矩阵 注1:多项式的集合不构成域,是环;因其对乘逆运算不封闭
文档格式:PDF 文档大小:9.76MB 文档页数:592
本书阐述了稳定性与鲁棒性这一系统与控制理论基本属性的系统的和必要的理论基础.包括时不变与时变线性系统、非线性系统的Lyapunov稳定性理论和方法;控制系统的结构性质与系统镇定:非线性控制系统的频域方法;参数不确定系统及H控制等鲁棒性分析与综合的理论与方法等本书内容系统严谨,可为从事系统与控制科学特别是有关稳定性与鲁棒性方面教学与科研的人员提供一个坚实的理论基础
文档格式:DOC 文档大小:250KB 文档页数:13
能控性(controllability)和能观测性(observability)深刻地揭示了系统的内部结构关系,由 .e.Kalman于60年代初首先提出并研究的这两个重要概念,在现代控制理论的研究与实 践中,具有极其重要的意义,事实上,能控性与能观测性通常决定了最优控制问题解的存 在性。例如,在极点配置问题中,状态反馈的的存在性将由系统的能控性决定;在观测器 设计和最优估计中,将涉及到系统的能观测性条件
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