Reliability Enhancement of Small and Medium Distribution System with Renewable Generations and Reclosers

J. Kumar, P. Venkatesh, S. Raja, J. J. Drusila Nesamalar, C. Palanichamy
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Abstract

The distribution system operator has a major responsibility of improving the system reliability and maintaining the system loss to minimum. This paper proposes a novel method of utilizing renewable generation units as Distributed Generator (DG) to simultaneously reduce distribution loss and improve distribution system reliability with the support of reclosers. The distribution system performance is improved by comparing the power loss minimization objective and Energy Not Supplied (ENS) minimization objective. The objectives are formulated as an optimization problem and solved using eminent searching feature of Cuckoo Search algorithm. By solving the non-linear objective functions, the optimal size of photovoltaic (PV) arrays and wind turbines are determined. The system is investigated with multiple DG locations identified through Loss Sensitivity Factor (LSF) and further extended by introducing reclosers for reliability improvement using analytical method. The proposed idea is tested in small and medium sized radial distribution systems.
采用可再生电源和逆变器的中小型配电系统可靠性提高
配电系统运营商的主要责任是提高系统可靠性,将系统损耗降至最低。本文提出了一种利用可再生能源发电机组作为分布式发电机组,在重合闸的支持下,同时降低配电损耗和提高配电系统可靠性的新方法。通过对电能损耗最小化目标和无供能最小化目标的比较,提高了配电系统的性能。将目标表述为一个优化问题,并利用布谷鸟搜索算法的显著搜索特性进行求解。通过求解非线性目标函数,确定了光伏阵列和风力发电机组的最优尺寸。通过损耗敏感系数(LSF)确定了多个DG位置,并通过引入重合闸进一步扩展了系统的可靠性。该方法在中小型径向配电系统中得到了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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