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Optimized and automated synthesis of robust PID controller with quantitative feedback theory

机译:基于定量反馈理论的鲁棒PID控制器的优化与自动化综合

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This study is motivated by the wide use of Proportional-Integral-Derivative (PID) controllers. In addition, the method of designing the PID controller can have a significant impact on its robustness. The potential of PID controller can be efficiently utilized only if it is tuned properly. We proposed a method of robust design of PID controllers for uncertain plant in the context of Quantitative Feedback Theory (QFT). The proposed method is applicable in the presence of different types of performance specifications-bringing to bear the full power of QFT. We have considered a new optimality criteria which delivers minimum gain of PID controller at each design frequency. The purpose of the proposed method is to automate the loop-shaping step of QFT design procedure for PID controller structure in the interval global optimization framework. The effectiveness of the proposed design method is illustrated through a variety of difficult design cases like resonant plant, open loop unstable plant and plant with variation in the time delay.
机译:这项研究的动机是广泛使用比例积分微分(PID)控制器。此外,设计PID控制器的方法可能对其鲁棒性有重大影响。只有正确调整PID控制器的潜力,才能有效利用它。在定量反馈理论(QFT)的背景下,我们提出了一种不确定工厂PID控制器的鲁棒设计方法。所提出的方法适用于存在不同类型的性能规格的情况下-承载QFT的全部功能。我们考虑了一个新的最佳性标准,该标准在每个设计频率下都提供PID控制器的最小增益。所提出的方法的目的是在区间全局优化框架中使PID控制器结构的QFT设计过程的循环成形步骤自动化。通过各种困难的设计案例(例如谐振设备,开环不稳定设备和时延变化的设备)来说明所提出的设计方法的有效性。

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