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
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《控制理论》课程教学资源(参考书籍)定量过程控制理论 Quantitative Process Control Theory_Chapter 02 Classical Analysis Methods
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
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《控制理论》课程教学资源(参考书籍)Feedback Control Theory_Chapter 08 Advanced Loopshaping
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《控制理论》课程教学资源(参考书籍)Feedback Control Theory_Chapter 07 Loopshaping
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《控制理论》课程教学资源(参考书籍)Feedback Control Theory_Chapter 06 Design Constraints
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《控制理论》课程教学资源(参考书籍)Feedback Control Theory_Chapter 05 Stabilization
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《控制理论》课程教学资源(参考书籍)Feedback Control Theory_Chapter 04 Uncertainty and Robustness
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