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Multi-Stage Multi-Zone Defender-Attacker-Defender Model for Optimal Resilience Strategy With Distribution Line Hardening and Energy Storage System Deployment

机译:具有配电线路硬化和能量存储系统部署的多阶段多区防御者攻击者 - 防御者 - 用于最优弹性战略的模型

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摘要

This article proposes an optimal strategy by using line hardening and energy storage system (ESS) deployment to enhance the distribution system (DS) resilience in natural disasters. A multi-stage multi-zone DS line state set is established, based on the conceptual resilience quantification, to reflect spatial and temporal characteristics of the severe contingencies. To address random contingencies, the proposed problem is formulated as a defender-attacker-defender (DAD) model that minimizes the weighted load shedding in the worst-case scenario, and the column-and-constraint generation (C&CG) algorithm is used to solve the model efficiently. The effectiveness of the proposed strategy is verified on the modified IEEE 33-node DS and a modified power grid representing a province in China.
机译:本文通过使用线路硬化和能量存储系统(ESS)部署来提高自然灾害中的分配系统(DS)弹性来提出最佳策略。基于概念弹性量化,建立多级多区DS线状态集,以反映严重突发事件的空间和时间特征。为了解决随机突发事件,提出的问题被制定为后卫攻击者 - 后卫(爸爸)模型,最小化最坏情况场景中的加权负载脱落,并且使用列和约束生成(C&CG)算法来解决该模型有效地。在修改的IEEE 33节点DS和代表中国的修改电网上验证了所提出的策略的有效性。

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