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Bi-level network reconfiguration model to improve the resilience of distribution systems against extreme weather events

机译:双层网络重新配置模型,可提高配电系统抵御极端天气事件的能力

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摘要

When a natural disaster occurs in a distribution network, a widespread power interruption may occur for a few days or weeks. This study presents a bi-level optimisation-based model for reconfiguration of the distribution network to improve the resilience of electricity distribution network against severe weather events such as storm and hurricane with the aim of minimising the cost of load outage. To achieve this, a model is first presented for evaluating the vulnerability of distribution network poles to estimate the damages imposed by the threat. Then, in the first level, according to the forecasting of possible failed lines and based on the predicted wind speed before the storm, a network reconfiguration strategy is employed to minimise the expected cost of load outage. In the second level, a new reconfiguration is carried out to restore the system loads and minimise the cost of load outage after the storm. The proposed model is then applied to a standard 33-bus radial distribution system using the GAMS software. The simulation results demonstrate the effectiveness of the proposed model in increasing network resilience and highlight the importance of network reconfiguration in the face of extreme natural disasters.
机译:当配电网发生自然灾害时,几天或几周内可能会发生广泛的电源中断。这项研究提出了一种基于双层优化的模型,用于配电网络的重新配置,以提高配电网络对恶劣天气事件(如暴风雨和飓风)的适应能力,旨在最大程度地降低停电成本。为此,首先提出了一个模型,用于评估配电网杆的脆弱性,以估计威胁造成的破坏。然后,在第一层中,根据可能发生故障的线路的预测并基于风暴前的预测风速,采用网络重新配置策略以最小化预期的负载中断成本。在第二级中,将执行新的重新配置以恢复系统负载并最大程度地减少风暴后的负载中断成本。然后使用GAMS软件将建议的模型应用于标准的33总线径向分配系统。仿真结果证明了该模型在提高网络弹性方面的有效性,并强调了面对极端自然灾害时网络重新配置的重要性。

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