Validation of a multivariable relay-based PID autotuner with specified robustness

R. Keyser, A. Maxim, C. Copot, C. Ionescu
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引用次数: 2

Abstract

This paper presents a multivariable relay-based PID autotuning strategy, which ensures a specified modulus margin (i.e. robustness). The algorithm is applied on the coupled quadruple tanks from Quanser. The system is challenging for control since it presents non-minimum phase transmission zeros. The performance of the autotuner is validated against a computer-aided design tool based on the frequency response, i.e. FRTool. The experimental results suggest that the proposed autotuning procedure has similar performance as the control design based on full knowledge of the system. This is a remarkable conclusion and provides a good motivation to claim that our algorithm may be useful in chemical process applications where full knowledge of the systems model is still a burden for the control engineer.
具有特定鲁棒性的多变量继电器PID自整定器的验证
本文提出了一种基于多变量继电器的PID自整定策略,该策略保证了给定的模余量(即鲁棒性)。将该算法应用于匡泽的耦合四缸。由于该系统存在非最小相位传输零点,给控制带来了挑战。通过基于频率响应的计算机辅助设计工具(即FRTool)验证了自动调谐器的性能。实验结果表明,所提出的自整定方法与基于系统完全知识的控制设计具有相似的性能。这是一个值得注意的结论,并提供了一个很好的动机,声称我们的算法可能在化学过程应用中有用,其中系统模型的全部知识仍然是控制工程师的负担。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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