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A Partitioning Method for Parallel Power System Restoration Based on Virus Propagation Model

机译:一种基于病毒传播模型的并联电力系统恢复的分区方法

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The first task of parallel power system restoration is to develop an efficient partitioning strategy. This paper applies the virus propagation model that considers the physical and topological properties of power systems to propose a novel partitioning method. Firstly, different blackstart units are defined as various types of viruses. The infection rate of buses can be calculated according to the importance of each bus in the power system. An immune strategy is then developed based on the buses at which faulted devices are damaged in the blackout. Considering key constraints on partitioning, viruses propagate among buses except for the faulted buses. Finally, the buses infected by the same type of viruses are divided into the same subsystem. Case studies on the IEEE 39-bus test system verified the effectiveness of the proposed partitioning method.
机译:并行电力系统恢复的第一个任务是开发有效的分区策略。本文适用于探测电力系统的物理和拓扑特性的病毒传播模型,提出了一种新的分区方法。首先,不同的BlackStart单元被定义为各种类型的病毒。公共汽车的感染率可以根据电力系统中每个总线的重要性计算。然后基于在停电中损坏故障设备的公共汽车进行免疫策略。考虑到分区的关键约束,除了故障总线之外的公共汽车之间的病毒传播。最后,被相同类型病毒感染的公共汽车分为相同的子系统。 IEEE 39总线测试系统的案例研究验证了所提出的分区方法的有效性。

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