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Critical Load Restoration Using Distributed Energy Resources for Resilient Power Distribution System

机译:弹性配电系统中使用分布式能源的临界负载恢复

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Extreme weather events have a significant impact on the aging and outdated power distribution infrastructures. These high-impact low-probability events often result in extended outages and loss of critical services, thus, severely affecting customers’ safety. This calls for the need to ensure the resilience in distribution networks by quickly restoring the critical services during a disaster. This paper presents an advanced feeder restoration method to restore critical loads using distributed energy resources (DERs). A resilient restoration approach is proposed that jointly maximizes the amount of restored critical loads and optimizes the restoration times by optimally allocating grids available DER resources. The restoration problem is modeled as a mixed-integer linear program with the objective of maximizing the resilience to postrestoration failures while simultaneously satisfying grids critical connectivity and operational constraints and ensuring a radial operation for a given open-loop feeder configuration. Simulations are performed to demonstrate the effectiveness of the proposed approach using the IEEE 123-node feeder with five DERs supplying 11 critical loads and the IEEE 906-bus feeder with three DERs supplying 17 critical loads. The impacts of DER availability and fuel reserve on restored networks are assessed and it is shown that the proposed approach is successfully able to restore a maximum number of critical loads using available DERs.
机译:极端天气事件会对老化和过时的配电基础设施产生重大影响。这些高影响力的低概率事件通常会导致停机时间延长和关键服务丢失,从而严重影响客户的安全。这就需要通过在灾难期间快速恢复关键服务来确保配电网络的弹性。本文提出了一种先进的馈线恢复方法,可使用分布式能源(DER)来恢复关键负载。提出了一种弹性恢复方法,该方法可以通过最佳地分配网格可用DER资源来共同最大化恢复的关键负载量并优化恢复时间。恢复问题被建模为一个混合整数线性程序,其目标是最大化对恢复后故障的恢复能力,同时满足电网的关键连通性和运行约束,并确保给定开环馈线配置的径向运行。通过仿真来证明所提出的方法的有效性,该方法使用具有五个DER提供11个关键负载的IEEE 123节点馈线,以及具有三个提供17个关键负载的DER的IEEE 906总线馈线。评估了DER可用性和燃料储备对恢复网络的影响,结果表明,所提出的方法能够成功地使用可用DER恢复最大数量的关键负荷。

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