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System splitting strategy considering power system restoration

机译:考虑电力系统恢复的系统拆分策略

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An Intentional Controlled Islanding (ICI) algorithm based on an exact Mixed Integer Programming Formulation (MILP) was previously proposed and tested using IEEE test systems. The proposed algorithm directly determines an islanding solution with minimal power-flow disruption for any given number of islands, while ensuring that each island contains only coherent generators. However, since one or more of the created islands might reach a local blackout after the splitting strategy is carried out, the aforementioned algorithm is extended to consider power system restoration constraints. Considering that data collection is essential to properly run a restoration process and assuming a completely observable power system at normal operating conditions, the extended ICI algorithm creates islands that are also completely observable, includes at least one blackstart unit within each island, and guarantees sufficient generation capacity to match the load consumption within each island. These new constraints can be viewed as a power system restoration planning stage.
机译:先前提出了一种基于精确混合整数编程公式(MILP)的故意控制孤岛(ICI)算法,并使用IEEE测试系统对其进行了测试。对于任何给定数量的孤岛,提出的算法可直接确定具有最小潮流中断的孤岛解决方案,同时确保每个孤岛仅包含相干发电机。然而,由于在执行分裂策略之后一个或多个创建的岛可能达到局部停电,因此前述算法被扩展以考虑电力系统恢复约束。考虑到数据收集对于正常运行恢复过程至关重要,并假设在正常运行条件下可完全观察到电力系统,因此扩展的ICI算法可创建也完全可观察到的孤岛,每个孤岛内至少包含一个黑启动单位,并保证有足够的发电量容量以匹配每个岛内的负载消耗。这些新的约束条件可以看作是电力系统恢复计划阶段。

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