Optimal tuning of PSS and STATCOM based controllers using differential evolution algorithm

Jitendra Bikanaria, Sanjeev Kumar Sharma, K. Parkh, Nishant Dhakre
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引用次数: 4

Abstract

In the present paper, optimal synchronization of PSS and STATCOM based controllers has been carried out using differential evolution (DE) algorithm for enhancement in power system stability. The design issues are generally formulated as constrained parameters, simulation based and non-linear optimized problem. The performance of the algorithm and simulation has been successfully tested on a single machine infinite bus system (SMIB) as well as on multi machine power system (MMPS). For the multi machine system, simulations are conceded on Kundur's four-machine two-area transmission network. The effectiveness of the optimized controllers is evaluated and then comparing those parameters with BFOA tuned PSS and STATCOM with both SMIB and MMPS system which is applied to several transient disturbances. Finally, simulations are carried out for proving the superiority of the DE algorithm over bacteria foraging optimization algorithm (BFOA).
基于差分进化算法的PSS和STATCOM控制器的优化整定
本文采用差分进化(DE)算法对基于PSS和STATCOM的控制器进行最优同步,以增强电力系统的稳定性。设计问题一般被表述为约束参数、基于仿真和非线性优化问题。该算法的性能和仿真在单机无限总线系统(SMIB)和多机电源系统(MMPS)上进行了成功的测试。对于多机系统,允许在Kundur的四机两区传输网络上进行仿真。对优化后的控制器的有效性进行了评价,并将这些参数与BFOA调谐的PSS和STATCOM进行了比较,SMIB和MMPS系统分别应用于几种瞬态干扰。最后,通过仿真验证了DE算法优于细菌觅食优化算法(BFOA)。
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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