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Tuning of Fractional Order PID Controllers based on the Frequency Response Approximation Method

机译:基于频率响应近似法的分数阶PID控制器整定

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Fractional Order PID (FOPID) controllers have been heavily studied in recent years, but most of the methods developed for its optimal design rely on the idea of including several robustness and performance specifications in the objective function. Thus they suffer from the same problem, namely the difficulty in finding the optimal controller parameters due to the impossibility of meeting all the specifications, and the high sensitivity to the initial parameter values. In this work, a new optimization-based tuning method for FOPID controllers is proposed. The method presents fast convergence and consists of specifying a desired closed-loop transfer function and finding the FOPID controller which gives the closed-loop behavior closest to the specified. The parameterization of the controller is shown, and the optimization procedure used is detailed. Then the proposed method is applied to design a FOPID to control an underdamped third order system with time delay, obtaining good robustness and performance.
机译:近年来,对分数阶PID(FOPID)控制器进行了深入研究,但是为优化设计而开发的大多数方法都依赖于在目标函数中包含多个鲁棒性和性能指标的想法。因此,它们遭受相同的问题,即由于不可能满足所有规格而难以找到最佳控制器参数,以及对初始参数值的高灵敏度。在这项工作中,提出了一种新的基于FOPID控制器的基于优化的调整方法。该方法具有快速收敛性,包括指定所需的闭环传递函数并找到FOPID控制器,该控制器给出的闭环行为最接近指定的行为。显示了控制器的参数化,并详细说明了使用的优化程序。然后将该方法应用于设计FOPID,以控制具有时滞的欠阻尼三阶系统,获得了良好的鲁棒性和性能。

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