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Optimization of LFC controller of two area system integrated with wind energy using HSA

机译:用HSA与风能集成的两个区域系统LFC控制器的优化

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Incorporation of wind energy into power systems has gathered substantial momentum globally due to its abundant supply and environmental benefits. Despite its numerous benefits, wind power in grid integration poses many challenges. The non-dispatchable and inherent intermittent qualities of wind energy not only insert additional fluctuations to the existing frequency deviation, they also reduce frequency stability by decreasing the regulation capability and the inertia. This paper presents the significance of these effects, which causes a larger frequency deviation in the proposed system. In this paper optimization algorithm used to optimize PID controller is Harmony Search Algorithm (HSA). The simulation and analytical results represented here provide guidance on calculating maximum wind power penetration level using frequency deviation limit.
机译:由于其丰富的供应和环境效益,将风能纳入动力系统集中在全球范围内聚集了大量势头。尽管有很多好处,但电网集成的风力造成了许多挑战。风能的不可驾销和固有的间歇性质不仅将额外的波动插入现有频率偏差,它们也通过降低调节能力和惯性来降低频率稳定性。本文呈现了这些效果的重要性,这导致提出的系统中的频率偏差。在本文的优化算法中,用于优化PID控制器是和声搜索算法(HSA)。这里表示的模拟和分析结果提供了使用频率偏差限制计算最大风力功率渗透水平的指导。

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