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Reliability-driven optimum standby electric storage allocation for power distribution systems

机译:可靠性驱动的功率分配系统的最佳备用蓄电电库分配

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Integration of distributed energy resources (DER) has become an indispensable aspect of the future smart grid. The significant and valuable impact of these resources is expected to lead toward a more reliable and efficient power system. As the number of distributed generation and storage systems increases, the availability of sensitive and critical loads may be improved by allocating a portion of electricity storage capacity as a reserve. The goal of this paper is to determine the optimum standby storage capacity in a smart grid based on reliability indices such as the Expected Interruption Cost (EIC) of the system using particle swarm optimization (PSO). To include the actual restrictions of the power distribution system, we perform load flow analysis and simulate a sequential post-fault scenario for every outage of the components. The results from different case studies show that standby electricity storage can become cost efficient at certain load points of the distribution system.
机译:分布式能源(Der)的集成已成为未来智能电网的不可或缺的方面。这些资源的显着和有价值的影响预计将导致更可靠和高效的电力系统。随着分布式生成和存储系统的数量增加,通过将一部分电存储容量分配作为储备来改善敏感和临界负载的可用性。本文的目标是基于使用粒子群优化(PSO)的可靠性指数(如系统的预期中断成本(EIC))确定智能电网中的最佳备用存储容量。要包括配电系统的实际限制,我们执行负载流分析并模拟每个中断组件的顺序故障情况。来自不同案例研究的结果表明,在分配系统的某些负载点处,待机电力储存可能变得高效。

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