基于分数阶PID的SVC稳压器

Manyu Liu, Huaying Dong, Guishu Liang
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引用次数: 2

摘要

SVC动态调整过程中存在快速与平稳的矛盾,但分数阶PID控制器比整数阶PID控制器多两个自由度,具有更好的控制性能。本文简要介绍了分数阶PID控制器,并通过Oustaloup数滤波方法实现了分数阶PID控制器,然后通过遗传算法对控制器的各个参数进行整定,最后将其用于SVC电压的稳压器过程中。仿真结果表明:在SVC的应用中,分数阶PID控制可以显著加快稳压器的速度,加速系统电压稳定的过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SVC Voltage Regulator Based on Fractional Order PID
Contradiction exist between rapid and smooth in the dynamic adjustment process of SVC, however, Fractional order PID controller has two degrees of freedom more than the integer order PID controller, and it has better control performance. This article briefly describes the fractional order PID controller, and through Oustaloup number of filtering methods to achieve a fractional order PID controller, then tuning various parameters of the controller by the genetic algorithm, at last used it in the process of the regulator SVC voltage. The results of Simulation show that:in the application of SVC, fractional order PID control can significantly speed up the speed of the voltage regulator, and accelerate the process of system voltage stability.
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