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Analytical fractional PID controller design based on Bode's ideal transfer transfer function plus time delay

机译:基于BODE的理想传递传递函数加上延迟的分析分数PID控制器设计

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摘要

In this paper, a fractional order PID controller cascaded with a fractional filter is proposed for higher order processes. In this analytical design methodology, one or two reduced fractional orders plus time delay models are used to represent higher order system transfer functions. The controller parameters are determined so as to meet certain frequency domain specifications. A unity feedback reference model is employed where Bode's ideal loop transfer function plus time delay of the fractional order model is placed in the forward path. The addition of this time delay provides the exact determination of frequency domain specifications if the system either intrinsically owns a time delay or a time delay is injected by its reduced order model. The proposed methodology is compared with two other related methodologies and it has been observed that the proposed controller performs much better than the others. Moreover, some empirical formulas for time domain characteristics of the reference model are numerically derived in terms of certain frequency domain specifications and time delay of the fractional reduced order model. The accuracy of these formulas is tested by simulations. The iso-damping, noise attenuation and load disturbance suppression performances of the proposed controller are also considered and compared with those of other related controllers. (C) 2019 ISA. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一种具有分数滤波器级联的分数级PID控制器,用于更高阶过程。在该分析设计方法中,使用一个或两个减少的分数顺序加上时间延迟模型来表示更高阶的系统传输功能。确定控制器参数以满足某些频域规范。采用UNICS反馈参考模型,其中BODE的理想环路传递函数加上分数阶模型的时间延迟放置在前向路径中。如果系统本质上有时间延迟或时间延迟,则该时间延迟提供了对频域规格的精确确定。该提出的方法与另外两种相关方法进行了比较,并且已经观察到所提出的控制器比其他控制器更好地表现得多。此外,根据分数减少订单模型的某些频域规范和时间延迟,在数值导出参考模型的一些经验性公式。这些配方的准确性通过模拟测试。还考虑了所提出的控制器的ISO衰减,噪声衰减和负载扰动抑制性能,并与其他相关控制器的控制器进行了比较。 (c)2019 ISA。 elsevier有限公司出版。保留所有权利。

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