Planning minimum reactive compensation to mitigate voltage instability

Haifeng Liu, Licheng Jin, J. McCalley, R. Kumar, V. Ajjarapu
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引用次数: 12

Abstract

This paper proposes a new optimization based algorithm to plan the minimum amount of switched shunt and series capacitors to restore the voltage stability of a power system after severe contingencies. Through parameterization of severe contingencies, the continuation method is applied to find the critical point. Then, the backward/forward search algorithm with linear complexity is used to select candidate locations for switched shunt and series capacitors. Next, a mixed integer programming formulation is proposed for computing locations and amounts of switched shunt and series capacitors to withstand a planned set of contingencies. A linear programming formulation is utilized to further refine the compensation amounts. The approach is illustrated using the New England 39-bus system
规划最小无功补偿以减轻电压不稳定
本文提出了一种新的基于优化的算法来规划最小量的开关并联电容器和串联电容器,以恢复电力系统在严重事故后的电压稳定。通过对严重偶然性的参数化,采用延拓法求出临界点。然后,采用线性复杂度的前向/后向搜索算法选择开关并联电容器和串联电容器的候选位置。接下来,提出了一种混合整数规划公式,用于计算开关并联和串联电容器的位置和数量,以承受计划的一组突发事件。利用线性规划公式进一步细化补偿量。以新英格兰39路公交系统为例说明了这种方法
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