An Optimal Design of 2DoF FOPID/PID Controller using Non-symmetrical Optimum Principle for an AVR System with Time Delay

Marko Č. Bošković, T. Šekara, M. Rapaić
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引用次数: 1

Abstract

In the present study, an optimization technique is performed to obtain optimal parameters of the fractional-order FOPID/PID controller for an automatic voltage regulator (AVR) system with the time delay introduced by measurement devices and communication links for data transfer. The primary aim of the controller design for AVR system is to sustain the terminal voltage of the synchronous generator (SG) within admissible ranges by adjusting exciter signals. The set of adjustable parameters of FOPID/PID controller is obtained through the maximization of the integral gain of FOPID controller under constraints on desired phase margin and two requirements on the basis of the non-symmetrical optimum principle. Resulting quality of the regulation is assessed with performance indices: settling time, overshoot and rise time, while Integral of the Absolute Error (IAE) is used as indicator of load disturbance rejection.
基于非对称优化原理的时滞AVR系统2自由度FOPID/PID控制器优化设计
在本研究中,采用一种优化技术来获得分数阶FOPID/PID控制器的最优参数,用于自动电压调节器(AVR)系统,该系统具有测量设备和数据传输通信链路引入的时间延迟。AVR系统控制器设计的主要目的是通过调节励磁信号使同步发电机的端电压保持在允许的范围内。基于非对称优化原理,在期望相位裕度和两个要求的约束下,通过FOPID控制器的积分增益最大化,得到FOPID/PID控制器的可调参数集。用稳定时间、超调时间和上升时间等性能指标评价调节结果的质量,用绝对误差积分(IAE)作为抗负荷扰动的指标。
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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