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Planning for Distribution Resilience under Variable Generation: Prevention, Surviving and Recovery

机译:可变发电下的配电弹性规划:预防,生存和恢复

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Power grids based on traditional N-1 design criteria are no longer adequate because these designs do not withstand extreme weather events or cascading failures. Microgrid system has the capability of enhancing grid resilience through defensive or islanded operations in contingency. This paper presents a probabilistic framework for planning resilient distribution system via distributed wind and solar integration. We first define three aspects of resilient distribution system, namely prevention, survivability and recovery. Then we review the distributed generation planning models that comprehend moment estimation, chance constraints and bi-directional power flow. We strive to achieve two objectives: 1) enhancing the grid survivability when distribution lines are damaged or disconnected in the aftermath of disaster attack; and 2) accelerating the recovery of damaged assets through pro-active maintenance and repair services. A simple 9-node network is provided to demonstrate the application of the proposed resilience planning framework.
机译:基于传统N-1设计标准的电网已不再足够,因为这些设计不能承受极端天气事件或级联故障。微电网系统具有通过应急情况下的防御性或孤岛式操作来增强电网弹性的能力。本文提出了一个通过分布式风能和太阳能集成来规划弹性配电系统的概率框架。我们首先定义弹性分配系统的三个方面,即预防,生存能力和恢复。然后,我们回顾了包含发电量估计,机会约束和双向潮流的分布式发电计划模型。我们努力实现两个目标:1)增强灾难袭击后配电线路损坏或断开时的电网生存能力; 2)通过主动的维护服务,加快受损资产的追回。提供了一个简单的9节点网络来演示所建议的弹性计划框架的应用。

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