萤火虫算法优化的多源电力系统负荷频率控制器

K. Ranjitha, P. Sivakumar, R. Elavarasu, M. Monica, A. Rajapandiyan
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引用次数: 2

摘要

提出了一种基于萤火虫算法优化的分布式发电渗透电力系统负荷频率控制器。为了满足不断增加的电力,可再生能源如太阳能光伏系统、风力发电被用于发电。由于可再生能源的性质都是波动的,因此保持每个区域的标称频率值成为电力系统工程师面临的主要挑战。与此同时,联络线功率的变化也是一个主要问题。负荷频率控制(LFC)的主要目标是减小区域频率和联络线功率的暂态偏差,使稳态误差几乎为零。LFC是保证电能质量和可靠性的关键。为满足DG渗透复杂系统的需要,需要新的LFC方法。因此,本文对具有一定可再生能源发电能力的正常电力系统的LFC问题进行了新的研究。采用萤火虫算法对LFC中的比例积分控制器(PI)进行参数整定。通过不同的负载和源来考虑各种测试用例。在所有考虑的测试用例中,通过将结果与PI和基于模糊的PI控制器联系起来,揭示了建议控制器的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Firefly Algorithm Optimized Load Frequency Controller for Multi-Source Power System
A novel Load Frequency Controller optimized by Firefly algorithm is proposed for a Distributed Generation (DG) penetrated power system. To meet the increased power, renewable energy such as solar PV systems, wind power based power generation is used. As renewable sources are all fluctuating in nature, maintaining the nominal frequency value in every area becomes a major challenge to the power system engineers. Along with this, the variation of the tie line power is also a major problem. The main objective of the Load Frequency Control (LFC) is to diminish the transient deviancies in the area frequency and the tie-line power and make the steady-state error almost zero. LFC is essential to ensure power quality and reliability. New approaches of LFC are required to meet the need of DG penetrated complex system. Hence, a new approach on the LFC of the normal interrelated power system with some renewable energy-based power generation is done. Firefly algorithm is adapted for the parameter tuning of the Proportional Integral Controller (PI) in LFC. The various test cases are considered by varying load and source. In all the test case considered the dominance of the suggested controller is revealed by relating the result with PI and Fuzzy based PI controller.
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