Power system stability enhancement with genetically optimized SVC controller

S. Hameed, P. Garg, S. K. Varshney
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引用次数: 6

Abstract

Multi-machine power system stability improvement by tuning of Static Var Compensator (SVC)-based controller parameters is investigated in the proposed method. The design problem is formulated as an optimization problem with a timedomain simulation-based objective function and Real-Coded Genetic Algorithm (RCGA) is used for searching optimal controller parameters. A multi-machine power system model is developed using MATLAB's SIMULINK which incorporates SVC Controller. A fault is created on the transmission line. The simulation results of the multi-machine power system without SVC Controller and with SVC Controller are presented. The simulation results are analyzed which shows that the power system becomes unstable on the occurrence of the fault if SVC controller is not used. This paper shows the effectiveness of the proposed design. The proposed method enhances the multi-machine power system stability.
遗传优化SVC控制器增强电力系统稳定性
本文研究了基于静态无功补偿器(SVC)的控制器参数整定提高多机电力系统稳定性的方法。设计问题是一个具有时域仿真目标函数的优化问题,并采用实时编码遗传算法(RCGA)搜索最优控制器参数。利用MATLAB的SIMULINK开发了一个集成SVC控制器的多机电力系统模型。传输线出现故障。给出了不带SVC控制器和带SVC控制器的多机电力系统的仿真结果。仿真结果表明,在不使用SVC控制器的情况下,电力系统在故障发生时变得不稳定。本文验证了所提设计的有效性。该方法提高了多机电力系统的稳定性。
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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