一种用于交流微电网频率控制的蝗虫优化FO-多级控制器

P. Sahu, B. Begum, R. Prusty, B. K. Sahu, Manoj Kumar Devnath
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引用次数: 5

摘要

微电网有能力为大多数孤立和偏远地区提供电力。微电网通常采用集成各种基于可再生能源的分布式发电(DG)源(如风力发电厂、太阳能发电厂、燃料电池)以及少数传统微源(如柴油发电机、微型涡轮机等)的结构。大多数直流系统惯性小,动态大,会严重影响系统频率。风力波动、太阳能变化和负荷动态等不确定性严重影响了系统性能,特别是微电网的频率。在上述不确定因素下,必须高度要求控制动作以保持标称频率。本文提出了一种鲁棒分数阶多级控制器,用于在风力和太阳能不确定性条件下对系统频率进行必要的控制。采用一种新颖的蚱蜢算法对上述投影控制器进行优化设计。最后,本文提出的分数阶多级控制器对微网格模型的频率控制更为有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A grasshopper optimized FO- multistage controller for frequency control of an AC microgrid
The microgrid has an ability to electrify most of isolated and remote areas significantly. Microgrids are commonly structured with the integration of various renewable energy based distributed generating (DG) sources like wind plant, solar plant, fuel cell along with few conventional micro sources such as diesel engine generator, micro-turbine etc. Most of DG systems experience low inertia and large dynamics which could affect the system frequency seriously. The uncertainties like wind fluctuation, solar energy variation and load dynamics degrades the system performance especially frequency of the mcrogrid seriously. A control action has to be highly required to maintain nominal frequency under above uncertainties. The present research paper proposes a robust fractional order multi stage controller to make necessary control over system frequency under wind and solar power uncertainties. A novel grasshopper algorithm has been employed to design optimally to the above projectrd controller. Finally, the suggested grasshopper designed fractional order multi stage controller is found to be more useful in observe to the frequency control of micrgrd model.
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