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Optimal sizing of Battery Energy Storage Systems for dynamic frequency control in an islanded microgrid: A case study of Flinders Island, Australia

机译:用于孤岛微电网中动态频率控制的电池储能系统的最佳尺寸:以澳大利亚弗林德斯岛为例

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摘要

Challenging frequency control issues, such as the reliability and security of the power system, arise when increasing penetration levels of inverter-interfaced generation are imposed. As a result of the displacement of convention generation in favour of renewable energy sources, the reduction of frequency response capabilities can be seen. A promising method of overcoming the aforementioned challenges is to utilise Battery Energy Storage Systems (BESS), which provides frequency support by injecting instantaneous power to the grid and back up the conventional generation systems. However, large battery systems increase the cost while inadequate battery capacities result in poor performance. This paper, therefore, proposes an approach for finding the optimum BESS size for an islanded microgrid power system. The determination of the optimum BESS size is based on an existing case study, under which the most severe contingencies of generation loss and load loss have been accounted for, as well as different levels of penetration of renewable energy sources. As a result of using meta-heuristic optimization (Grey Wolf Optimization), the constraint optimization problem has been identified as BESS sizing. Through the use of real-time simulation DIgSILENT PowerFactory software, estimated BESS size can be applied to a standalone microgrid to test the frequency of support capabilities. The simulation has made it apparent that through the selection of the optimum BESS size, the system frequency response is not only mitigated, but improved.
机译:当强制增加逆变器接口的发电的普及程度时,就会出现具有挑战性的频率控制问题,例如电力系统的可靠性和安全性。由于将常规代换成可再生能源,导致了频率响应能力的下降。克服上述挑战的一种有前途的方法是利用电池储能系统(BESS),该系统通过向电网注入瞬时功率并支持常规发电系统来提供频率支持。但是,大型电池系统会增加成本,而电池容量不足会导致性能下降。因此,本文提出了一种为孤岛微电网电力系统找到最佳BESS尺寸的方法。最佳BESS尺寸的确定是基于现有的案例研究,在该案例中,考虑了发电损失和负荷损失的最严重突发事件以及可再生能源的不同渗透水平。作为使用元启发式优化(灰狼优化)的结果,约束优化问题已被确定为BESS调整大小。通过使用实时仿真DIgSILENT PowerFactory软件,可以将估计的BESS大小应用于独立的微电网,以测试支持能力的频率。仿真表明,通过选择最佳的BESS大小,不仅可以缓解系统频率响应,而且可以改善系统频率响应。

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