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2.1 线性系统响应的特点 2.2 线性系统状态转移矩阵及其性质 2.3 线性时变系统的响应 2.4 线性定常系统的响应 2.5 线性离散系统的响应
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3—1 系统时间响应的性能指标 3—2 一阶系统的时域分析 3—3 二阶系统的时域分析 3—4 高阶系统的时域分析 3—5 线性系统的稳定性分析 3—6 线性系统的稳态误差计算
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5—1 引言 5—2 频率特性 5—3 开环系统的典型环节分解和开环频率特性 5—4 频率域稳定判据 5—5 稳定裕度 5—6 闭环系统的频域性能指标
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非线性:指元件或环节的静特性不是按线性规律变化。非线性系统:如果一个控制系统,包含一个或一个以上具有非线性静特性的元件或环节,则称这类系统为非线性系统,其特性不能用线性微分方程来描述
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$1 线性定常系统的状态空间描述 $2线性定常系统的分析 $4 线性时变系统的分析 $5线性离散系统的分析 $6 线性连续状态方程的离散化
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4—1 根轨迹法的基本概念 4—2 根轨迹绘制的基本法则 4—3 广义根轨迹 4—4 系统性能的分析
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System compensation is the process of designing a controller that will produce an acceptable transient response while maintaining a desired steady-state accuracy .These two design objectives are conflicting in most systems ,since small errors imply high gains reduce system stability and may even drive the system unstable .Compensation may be thought of as the process of increasing the stability of a system without reducing its accuracy below minimum acceptable standards
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Frequency response is the analysis of the response of systemswhen subjected to a sinusoidal change in input. When a linear system is subjected to a sinusoidal input, its ultimate response is also a sustained sinusoidal wave, with the same frequency. The figure below compares the output response of a system (solid line) with a sinusoidal input (dashed line) disturbing the system
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1 Introduction 2 Deterministic Dynamic Programming and Viscosity Solutions 2.1 Introduction 2.2 Value Functions are Viscosity Solutions 2.3 Comparison and Uniqueness 3 Stochastic Control 3.1 Some Probability Theory 3.2 Controlled State Space Models 3.3 Filtering 3.4 Dynamic Programming - Case I : Complete State Information 3.5 Dynamic Programming - Case II : Partial State Information 3.6 Two Continuous Time Problems 4 Robust Control 4.1 Introduction and Background 4.2 The Standard Problem of H∞ Control 4.3 The Solution for Linear Systems 4.4 Risk-Sensitive Stochastic Control and Robustness 5 Optimal Feedback Control of Quantum Systems 5.1 Preliminaries 5.2 The Feedback Control Problem 5.3 Conditional Dynamics 5.4 Optimal Control 5.5 Appendix: Formulas for the Two-State System with Feedback Example 6 Optimal Risk-Sensitive Feedback Control of Quantum Systems 6.1 System Model
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3.1 Introduction 3.2 Typical test signals for time response of control systems 3.3 First –Order Systems 3.4 Performance of a Second-Order System 3.5 Concept of Stability 3.6 The Relative Stability of Feedback Control Systems
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