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Resilience Enhancement of Distribution Grids Against Extreme Weather Events

机译:增强配电网抵御极端天气事件的能力

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This paper proposes a resilience-oriented design (ROD) technique to protect distribution grids against high-impact but low-probability extreme weather events. The problem is formulated as a two-stage stochastic mixed integer problem. The first stage is to make ROD decisions, i.e., hardening existing distribution lines and deploying ROD resources such as back-up distributed generators and automatic switches. The second stage evaluates the system operation cost during a realized extreme weather event and repair cost after the event. A novel modeling strategy is proposed to deal with the decision-dependent uncertainty of distribution line damage status, which is affected by the first-stage hardening decisions. As both stages have binary variables, a modified and computationally efficient progressive hedging algorithm with scenario bundling is introduced. The algorithm performance is evaluated by calculating lower bounds of solutions. The proposed model and algorithms are demonstrated on 34-bus and 123-bus test feeders.
机译:本文提出了一种面向弹性的设计(ROD)技术,以保护配电网免受高影响但低概率的极端天气事件的影响。该问题被表述为两阶段随机混合整数问题。第一步是做出ROD决策,即强化现有的配电线路并部署ROD资源,例如备用分布式发电机和自动交换机。第二阶段评估已实现的极端天气事件期间的系统运行成本以及事件发生后的维修成本。提出了一种新的建模策略来应对配电线路损伤状态的决策相关不确定性,该不确定性受第一阶段强化决策的影响。由于两个阶段都具有二进制变量,因此引入了一种具有场景绑定的改进且计算效率高的渐进套期保值算法。通过计算解的下界来评估算法性能。提出的模型和算法在34总线和123总线测试馈线上进行了演示。

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