Impacts of community and distributed energy storage systems on unbalanced low voltage networks

Yiju Ma, Mohammad Seydali Seyf Abad, Donald Azuatalam, G. Verbič, Archie C. Chapman
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引用次数: 7

Abstract

Energy storage systems (ESS) are expected to be an indepensable resource for mitigating the effects on networks of high penetrations of distributed generation in the near future. This paper analyzes the benefits of ESS in unbalanced low voltage (LV) networks regarding three aspects, namely, power losses, the hosting capacity and network unbalance. For doing so, a mixed integer quadratic programmming model (MIQP) is developed to minimize annual energy losses and determine the sizing and placement of ESS, while satisfying voltage constraints. A real unbalanced LV UK grid is adopted to examine the effects of ESS under two scenarios: the installation of one community ESS (CESS) and multiple distributed ESSs (DESSs). The results illustrate that both scenarios present high performance in accomplishing the above tasks, while DESSs, with the same aggregated size, are slightly better. This margin is expected to be amplified as the aggregated size of DESSs increases.
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社区和分布式储能系统对不平衡低压电网的影响
储能系统(ESS)有望在不久的将来成为一种独立的资源,以减轻分布式发电对高渗透网络的影响。本文从电能损耗、主机容量和网络不平衡三个方面分析了ESS在不平衡低压电网中的效益。为此,开发了一个混合整数二次规划模型(MIQP),在满足电压约束的情况下,将年能量损失最小化,并确定ESS的大小和位置。采用一个真实的不平衡低压英国电网,在安装一个社区ESS (CESS)和多个分布式ESS (DESSs)两种情况下,研究了ESS的效果。结果表明,两种场景在完成上述任务时都表现出很高的性能,而在聚合大小相同的情况下,DESSs略好一些。这一差额预计将随着筹资筹资总规模的增加而扩大。
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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