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Mobile Energy Resource Allocation for Distribution System Resilience Against Earthquakes

机译:分配系统弹性对抗地震的移动能源资源分配

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The occurrence of natural disasters imposes potential damage on the power systems. Many methods have been proposed to improve power system resilience by constructing load restoration when the blackout happens. However, disaster like earthquakes may have secondary impacts (i.e., aftershock of earthquake) which would undermine the post-contingency power supply and cause restoration failure. To address such challenge, this paper proposes a Mobile Energy Resource (MER) allocation strategy to restore critical loads by determining the most reliable restoration path against the potential earthquakes. Benefited from the mobility of MER, the restoration paths can always be adjusted according to the real damage of earthquakes as long as there are available paths and capacity. On the other hand, when curtailment is inevitable, critical loads would be optimally shed based on priority. The effectiveness of the proposed strategy is verified by case studies on the modified IEEE 123-node test feeder.
机译:发生自然灾害的发生对电力系统造成了潜在的损坏。已经提出了许多方法来改善电力系统弹性通过在停电发生时构建负载恢复。然而,像地震发生的灾难可能会产生二次影响(即,地震余震),这会破坏应急后电源并导致恢复失败。为了解决这些挑战,本文提出了一种移动能源资源(MER)分配策略来恢复临界负荷,通过确定潜在地震的最可靠的恢复路径来恢复临界负荷。受益于MER的移动性,只要有可用的路径和容量,恢复路径总是可以根据地震的真正损坏调整。另一方面,当缩减是不可避免的,基于优先级的临界负载将是最佳的。通过对改进的IEEE 123节点测试馈线的情况进行案例研究验证了所提出的策略的有效性。

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