PV and BESS Integration in Radial Distribution Network Using Dragonfly Algorithm

S. Ray, Kumari Kasturi, M. Nayak
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引用次数: 1

Abstract

The combination of photovoltaics (PV) and battery energy storage systems (BESS) offers a viable solution for improving distribution network reliability due to their favorable operating efficiencies. To realize considerable economic benefits, PV units and BESS need to be incorporated into distribution networks in a way that takes advantage of location and capacity. In this paper, the photovoltaic (PV) and BESS system is integrated into IEEE 33 bus radial distribution system (RDS) to minimize the annual active power loss and the net system annual cost. Two objective functions are formulated as a multi-objective problem, which is solved by the novel Dragonfly algorithm (DA). Yearly load and PV data are considered for simulation. The simulation is done for one year. To analyze the effectiveness of the proposed system, two days of a year are compared for analysis, one day from summer and the other from winter respectively. Significant improvement can be noticed from the result analysis.
基于蜻蜓算法的径向配电网光伏与BESS集成
光伏(PV)与电池储能系统(BESS)的结合,由于其良好的运行效率,为提高配电网可靠性提供了可行的解决方案。为了实现可观的经济效益,光伏机组和BESS需要以一种利用位置和容量优势的方式并入配电网络。本文将光伏(PV)和BESS系统集成到IEEE 33总线径向配电系统(RDS)中,以最大限度地降低年有功损耗和系统年净成本。将两个目标函数表述为一个多目标问题,并采用一种新的蜻蜓算法(DA)进行求解。模拟考虑了年负荷和PV数据。模拟时间为一年。为了分析所提出的系统的有效性,将一年中的两天进行比较分析,分别来自夏季和冬季的一天。从结果分析中可以看出显著的改进。
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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