基于WCA PID控制器的多区域电力系统AGC与ELD的结合分析

D. Mishra, Srikanta Mohapatra, P. Sahu, R. Prusty, Krushna Keshab Baral
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引用次数: 2

摘要

本文在一个共同的研究框架下,对互联电力系统的自动发电控制(AGC)和经济负荷调度(ELD)的联合作用进行了研究。在电力系统中,需要采用不同的控制动作来实现必要的控制。在这方面,目前的研究论文提出了一种鲁棒的比例积分与导数(PID)控制器作为主控制器和副控制器来进行这项联合研究工作。主PID控制器专门用于ELD问题,然而,辅助PID控制器用于AGC分析。主控制器的功能是在不违反发电限制的情况下,以最优和最经济的方式控制电站的发电。而二次控制器的职责是在任何不确定情况下保持系统频率和计划联络线功率的稳定。此外,本文还提出了一种新的水循环算法(WCA)来选择所提出的PID控制器在任何运行情况下的最优参数。最后,综合了各种比较研究,以捍卫所提出的PID控制器优于PI控制器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combined AGC and ELD analysis of a multi area power system with WCA based PID Controller
The research paper has addressed on combined action of automatic generation control (AGC) and economic load dispatch (ELD) of an interconnected power system in a common research frame. Different control actions need to be employed to pertain necessary controls in the power system. In this regard, current research paper proposes a robust Proportional Integral and Derivative (PID) controller as primary and secondary controller for this combined research work. The primary PID controller especially meant for only ELD concern, however the secondary PID controller works for the AGC analysis. The function of the primary controller is to control the generation of plant with optimum and cost effective without violating the generation limit. Whereas the responsibility of the secondary controller is maintain stability over system frequency and scheduled tie-line power under any uncertainties. Further, the paper has suggested a novel water cycle algorithm (WCA) to select optimal parameters of the proposed PID controller under any operating situations. Finally, various comparative studies have been synthesized to defend supremacy of the proposed PID controller over PI controller.
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