论文标题

可移动能源的大小,以恢复和可靠性增强

Sizing of Movable Energy Resources for Service Restoration and Reliability Enhancement

论文作者

Bhusal, Narayan, Gautam, Mukesh, Benidris, Mohammed

论文摘要

近年来,极端事件(例如飓风,地震和洪水)以及人造攻击(网络和身体攻击)的频率急剧增加。这些事件严重影响了电源系统,从长时间的停电时间到主要设备(例如变电站,传输线,发电厂和配电系统)的破坏。分配系统故障和中断是电源中断的主要因素。网络重新配置和可移动能源资源(MERS)可以在意外情况下和之后供应负载中发挥至关重要的作用。本文提出了一种两阶段策略,以确定具有网络重新配置的MER的最小尺寸,用于分发服务恢复并提供本地和孤立的负载。顺序的蒙特卡洛模拟用于建模分布系统组件的故障。偶然性之后,第一阶段确定基于生成树搜索算法的网络重新配置。在第二阶段,如果某些系统负载无法通过网络重新配置来喂养,则将部署MER,并根据DSPA确定到达隔离区域的最佳路线。从DSPA获得的旅行时间与所提出的基于基于蒙特卡洛模拟的方法合并,以确定MER的大小。所提出的方法应用于包括IEEE-13和IEEE-123节点测试馈线在内的多个分布系统上。结果表明,网络重新配置可以减少MER所需的MERS尺寸以提供孤立的区域。

The frequency of extreme events (e.g., hurricanes, earthquakes, and floods) and man-made attacks (cyber and physical attacks) has increased dramatically in recent years. These events have severely impacted power systems ranging from long outage times to major equipment (e.g., substations, transmission lines, power plants, and distribution system) destruction. Distribution system failures and outages are major contributors to power supply interruptions. Network reconfiguration and movable energy resources (MERs) can play a vital role in supplying loads during and after contingencies. This paper proposes a two-stage strategy to determine the minimum sizes of MERs with network reconfiguration for distribution service restoration and supplying local and isolated loads. Sequential Monte Carlo simulations are used to model the outages of distribution system components. After a contingency, the first stage determines the network reconfiguration based on the spanning tree search algorithm. In the second stage, if some system loads cannot be fed by network reconfiguration, MERs are deployed and the optimal routes to reach isolated areas are determined based on the DSPA. The traveling time obtained from the DSPA is incorporated with the proposed sequential Monte Carlo simulation-based approach to determine the sizes of MERs. The proposed method is applied on several distribution systems including the IEEE-13 and IEEE-123 node test feeders. The results show that network reconfiguration can reduce the required sizes of MERs to supply isolated areas.

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