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Adaptive Formation of Microgrids With Mobile Emergency Resources for Critical Service Restoration in Extreme Conditions

机译:带有移动应急资源的微电网自适应形成,用于极端条件下的关键服务恢复

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摘要

The existing microgrid-based distribution system restoration methods follow traditional restoration criteria, which achieve a maximum coverage of distribution systems. In extreme conditions (e.g., natural disasters and physical and cyber attacks), the traditional restoration plans could pose additional financial and security risks to local utility customers. That is, restored services could be further interrupted by subsequent outages in the extended event. To address such resilience challenges, this paper proposes the formation of adaptive multimicrogrids as part of the critical service restoration strategy. The proposed strategy comprises microgrid formation (MF) and load switching sequence (LSS) steps. The MF forms multiple microgrids with minimum overall scale and radial or looped topologies and includes optimally positioned mobile emergency resources to address potential risks in extreme conditions. The LSS determines a proper load switching sequence for ensuring the system dynamic performance in the restoration process. The effectiveness of the proposed strategy is verified by a case study on the IEEE 132-node test feeder system and the time-domain simulation in MATLAB Simulink.
机译:现有的基于微电网的配电系统恢复方法遵循传统的恢复标准,从而实现了配电系统的最大覆盖。在极端情况下(例如自然灾害以及物理和网络攻击),传统的恢复计划可能会给本地公用事业客户带来额外的财务和安全风险。也就是说,扩展事件中的后续中断可能进一步中断恢复的服务。为了应对这种弹性挑战,本文提出了自适应多微电网的形成,作为关键服务恢复策略的一部分。所提出的策略包括微电网形成(MF)和负载切换序列(LSS)步骤。 MF形成具有最小总体规模和径向或环形拓扑的多个微电网,并包括优化定位的移动应急资源,以应对极端条件下的潜在风险。 LSS确定适当的负载切换顺序,以确保恢复过程中的系统动态性能。通过在IEEE 132节点测试馈线系统上的案例研究以及MATLAB Simulink中的时域仿真,验证了所提出策略的有效性。

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