Robust data driven control in frequency domain: A model-free approach.

Seyed-Masoud Tabibian, Mohammad Ataei, Hamid-Reza Koofigar
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引用次数: 0

Abstract

Data-driven control methods in the frequency domain commonly require the determination of controller structure. Relaxing such restriction in the proposed algorithm, the controller design is transformed into an optimization problem, based on the υ-gap Metric criterion. By defining a desired stability margin and the desired frequency response of the controller, a criterion is determined to characterize a family of controllers. Therefore, a model free procedure is proposed to determine a family of controllers, by taking the plant frequency response and the desired stability margin. On the other hand, by adopting a new index, presented in this paper, the designer can determine the optimal controller, based on the implementation conditions. Another advantage of the proposed method is its applicability to uncertain Multi-Input Multi-Output (MIMO) systems. The loop performance in the presented algorithm can be also enhanced by appropriate selection of weighting matrices in a loop shaping procedure. Two examples are also presented to demonstrate the effectiveness of the method for multi-variable non-square uncertain systems, including a practical example of a purely delayed system.

频域鲁棒数据驱动控制:一种无模型方法。
频域数据驱动控制方法通常需要确定控制器结构。该算法放宽了这一限制,将控制器设计转化为基于间隙度量准则的优化问题。通过定义控制器的期望稳定裕度和期望频率响应,确定了一个标准来表征一类控制器。因此,提出了一种无模型的方法,通过选取对象的频率响应和期望的稳定裕度来确定控制器族。另一方面,通过采用本文提出的新指标,设计人员可以根据实现条件确定最优控制器。该方法的另一个优点是适用于不确定多输入多输出(MIMO)系统。在环路成形过程中,适当选择加权矩阵可以提高算法的环路性能。最后给出了两个实例来证明该方法对多变量非平方不确定系统的有效性,其中包括一个纯延迟系统的实例。
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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