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Reactive Power Planning Based on Fuzzy Clustering, Gray Code, and Simulated Annealing

机译:基于模糊聚类,格雷码和模拟退火的无功规划

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摘要

Voltage stability constrained reactive power planning (RPP) or VAr planning is a very challenging issue in power systems. This paper proposes a new approach for modeling and solving VAr planning problem taking into account the static voltage stability constraint. First, the fuzzy clustering method is employed to select new candidate VAr source locations. Then, modified Gray code is proposed and used to represent a series of non-uniform VAr capacity intervals at different candidate buses. Under the new ordering of the VAr capacity intervals, a simplified piecewise linear function between the total transfer capability (TTC) and new VAr capacity is derived and applied as static voltage stability constraint in RPP. Finally, the RPP optimization model is solved by an enhanced simulated annealing (SA) algorithm taking advantage of the modified Gray code. In the SA algorithm, a modified definition of the neighborhood selection and a novel approach to generate new random solutions are proposed. In the case study, fuzzy clustering method, the modified Gray code, and the improved SA are applied to the IEEE 30-bus system. Test results conclude that the proposed method is a simplified and effective approach for voltage stability constrained VAr planning with contingency considered.
机译:电压稳定性受限的无功功率计划(RPP)或VAr计划在电力系统中是一个非常具有挑战性的问题。考虑到静态电压稳定性约束,本文提出了一种新的建模和解决VAr规划问题的方法。首先,采用模糊聚类方法选择新的候选VAr源位置。然后,提出了改进的格雷码,并将其用于表示不同候选总线上的一系列不均匀的VAr容量间隔。在VAr容量区间的新排序下,得出了总传输容量(TTC)与新VAr容量之间的简化分段线性函数,并将其用作RPP中的静态电压稳定性约束。最后,利用改进的格雷码,通过增强的模拟退火(SA)算法求解RPP优化模型。在SA算法中,提出了一种改进的邻域选择定义和一种生成新的随机解的新颖方法。在案例研究中,将模糊聚类方法,改进的格雷码和改进的SA应用于IEEE 30总线系统。测试结果表明,所提出的方法是一种针对电压稳定约束的VAr规划的简化有效方法,并考虑了应急措施。

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