多区域电力系统LFC控制方法综述:鲁棒t2模糊控制器

S. Routray, S. Choudhury, P. Sahu, Srikanta Mohapatra
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引用次数: 0

摘要

负荷的频繁动态是电力系统可靠运行面临的最大挑战。根据新的需求设置发电量,在系统中产生标称频率,这一过程称为负载频率控制(LFC)。选择合适的控制器和合适的优化技术是LFC属性的关键因素和支柱。在任何电力灾害情况下,LFC总是以各电站间的标称频率和计划潮流为目标。本研究工作受到一些关于LFC的新颖研究文章的启发,并试图根据新的需求提出一种鲁棒的2型模糊控制(t2模糊)方法来监测电网频率。由于所采用的控制器尺寸最优,因此提出了一种称为离散水循环算法(d-WCA)的高贵技术来进行此活动。结果部分对t2模糊控制器与以往采用的各种常规控制器进行了良好的性能比较分析,用于该公共电网的频率监测。在此基础上,将d-WCA技术的调谐能力与已有的方法进行了比较,证明了d-WCA技术的优越性。最后,验证了所提出的t2模糊控制器和d-WCA技术等方法在各自的应用领域能够表现出优异的性能
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A review analysis on various approaches for LFC of multi area power system: Robust t2 fuzzy controller
Frequently load dynamic is a biggest challenge for the reliable operation of power system. Setting up generation as per the new demand makes nominal frequency in the system and the process is called load frequency control (LFC). The selection of proper controller as well as suitable optimization technique are the key factor and back bone of the LFC attribute. LFC always targets for nominal frequency and scheduled power flow among various power stations under any electrical disasters. This research work is inspired by few novel research articles on LFC and trying to suggest a robust type2 fuzzy control (t2 fuzzy) approach for monitoring grid frequency as per the new demand. Owing to the optimal sizing of the employed controller, a noble technique named discrete water cycle algorithm (d-WCA) is proposed fort this activity. The result section covers a healthy performance comparative analysis of t2 fuzzy controller with various previously employed conventional controller for frequency monitoring of this common power grid. Then the tuning capability the d-WCA techniques has been also compared with different already employed approaches to demand d-WCA superiority. Finally, it is verified that proposed approaches such as t2 fuzzy controller and d-WCA technique are able to show brilliant performance in their respective area of application
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