Multi-objective Optimal Placement and Sizing of Battery Energy Storage System in Unbalanced Three-Phase Distribution Networks with High PV Penetration

Devendra Shrimant Sul, A. Phadke
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Abstract

Non-renewable energy resources cause high carbon emissions and Global Warming, threatening the environment. Due to these reasons, the Government of India has set a target of achieving 38000 MW of Roof Top Solar Plants by 31st December 2022. This will lead to remarkably high PV penetration at the distribution level. The generation through solar PV is not constant throughout the day due to the variable intensity of sunlight during the daytime and the absence of sunlight during the night. There are also seasonal variations. This results in degradation of voltage profile, increase in losses, increase in peak demand on the substation, and unbalances in the distribution system. Battery energy storage systems (BESS) play an important role in mitigating these worse impacts. However, because of the high cost of the battery storage system, its optimal sizing and placement is very important. Optimally placed BEES can make the distribution system more balanced, improve voltage profile, and reduce losses in the distributed network. In this paper, a new multi-objective technique using Particle Swarm optimization has been proposed for optimal placement and sizing of BESS. The proposed approach has been tested on a practical three-phase unbalanced 19-bus distribution feeder. The obtained results show that optimal placement of BESS using the proposed approach leads to reduced power losses, improved voltage profile and reduction in feeder load during peak-load hours.
高光伏渗透率不平衡三相配电网中蓄电池储能系统的多目标优化布局与规模
不可再生能源造成高碳排放和全球变暖,威胁着环境。由于这些原因,印度政府设定了到2022年12月31日实现38000兆瓦屋顶太阳能发电厂的目标。这将导致在配电层面上非常高的光伏渗透率。由于白天阳光强度的变化和夜间阳光的缺失,太阳能光伏发电在一天中不是恒定的。还有季节变化。这会导致电压分布的退化、损耗的增加、变电站峰值需求的增加以及配电系统的不平衡。电池储能系统(BESS)在缓解这些更严重的影响方面发挥着重要作用。然而,由于电池存储系统的高成本,其最佳尺寸和放置是非常重要的。优化放置bee可以使配电系统更加平衡,改善电压分布,减少分布式网络的损耗。本文提出了一种新的多目标粒子群优化技术,用于优化BESS的布局和尺寸。该方法已在实际的三相不平衡19母线配电馈线上进行了测试。结果表明,采用该方法优化BESS布局可以降低功率损耗,改善电压分布,并在高峰负荷时段减少馈线负荷。
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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