Impact of clustering microgrids on their stability and resilience during blackouts

Mahmoud Saleh, Ammar Althaibani, Yusef Esa, Yassine Mhandi, A. Mohamed
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引用次数: 99

Abstract

In this paper, the impact of clustering multiple microgrids during blackouts, on their stability and supply availability, will be investigated. Microgrids have the capability of satisfying their emergency loads during blackouts. However, distributed energy resources (DERs)-dominated microgrids are affected by the uncertainty of their input energy supply, e.g. impact of solar irradiance on photovoltaic (PV) output. Moreover, an individual islanded microgrid is prone to instability issues due to large sudden load/generation changes. In order to increase the supply security, and enhance system stability, we propose to use the existing distribution grid infrastructure, if applicable, during blackouts to form microgrid clusters. The paper discusses the required control hierarchy required to manage the microgrid clusters, and communicate with the Distribution Network Operator (DNO). A case study based on the 13-bus standard distribution feeder, and two microgrid models, is presented. Results show that microgrids clustering helps improve their performance and that the microgrid generator inertia has a direct impact on the stability of the microgrid cluster.
集群微电网对停电时稳定性和恢复力的影响
本文将研究停电期间多微电网集群对其稳定性和供电可用性的影响。微电网具有满足停电期间应急负荷的能力。然而,分布式能源(DERs)主导的微电网受到其输入能源供应的不确定性的影响,例如太阳辐照度对光伏(PV)输出的影响。此外,单个孤岛微电网容易由于负载/发电的突然变化而出现不稳定问题。为了提高供电安全性,增强系统稳定性,我们建议在停电期间尽可能利用现有配电网基础设施组成微电网集群。本文讨论了管理微电网集群所需的控制层次,以及与配电网运营商(DNO)的通信。以13总线标准配电馈线和两种微电网模型为例进行了分析。结果表明,微电网聚类有助于提高微电网的性能,而微电网发电机的惯性直接影响微电网簇的稳定性。
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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