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CONTROLLED ISLANDING OF POWER SYSTEMS CONSIDERING VOLTAGE STABILITY CONSTRAINTS

机译:考虑电压稳定性约束的电力系统受控岛屿

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An Intentional Controlled Islanding (ICI) algorithm that 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 was previously proposed and tested using IEEE test systems. The proposed algorithm is based on an exact Mixed Integer Linear Programming Formulation (MILP). However, since voltage instability has been found to be one of the main causes of several recent blackouts in the world, in this paper, the aforementioned algorithm is extended to consider voltage stability constraints. The extended ICI algorithm guarantees sufficient generation capacity (active and reactive power) to match the load consumption within each island. At the same time, it reduces the possibility of voltage collapse by assigning the weakest buses to the islands in such a way to be as close as possible to the sources or sinks of reactive power. The new constraints are expected to further improve the transient stability of the formed islands.
机译:一种有意控制的岛屿(ICI)算法,直接确定任何给定数量的岛屿的电力流动中的孤岛解决方案,同时确保每个岛上仅含有相干发生器,先前使用IEEE测试系统进行测试。所提出的算法基于精确的混合整数线性编程制定(MILP)。然而,由于已经发现电压不稳定性是世界上几个最近停电的主要原因之一,本文延长了上述算法以考虑电压稳定性约束。扩展ICI算法可确保足够的生成容量(主动和无功电源)以匹配每个岛内的负载消耗。同时,它通过将最弱的公共汽车分配给岛屿的方式来降低电压塌陷的可能性,以便尽可能接近电源或无功功率的汇款。预计新约束将进一步提高所形成岛的瞬态稳定性。

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