Pilot buses selection based on reduced Jacobian matrix

Nivine Abou Daher, I. Mougharbel, M. Saad, H. Kanaan, D. Asber
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引用次数: 4

Abstract

The non-supervised insertion of renewable energy sources into electric power networks causes fluctuations that may lead to voltage instability. The simple and coordinated secondary voltage control systems are used to avoid this instability. To obtain maximum regulation performance with optimized number of controllers, an appropriate selection of pilot buses is suggested. In this paper new algorithm is proposed to select optimal pilot buses. This method is based on the singular decomposition of the reduced Jacobian matrix with the voltage security margin index. To evaluate the efficiency of this algorithm, a comparison with the Bifurcation, Clustering with Node-Partitioning Around Medoids and the Hybrid algorithms is proposed. The simulation results show that the proposed algorithm gives optimal pilot buses according to the selection criteria (explained later in the paper).
基于约简雅可比矩阵的导频母线选择
无监督地将可再生能源插入电网会引起波动,从而可能导致电压不稳定。采用简单而协调的二次电压控制系统来避免这种不稳定性。为了在控制器数量优化的情况下获得最大的调节性能,建议适当选择导频母线。本文提出了一种选择最优导频母线的新算法。该方法基于带电压安全裕度指标的约简雅可比矩阵的奇异分解。为了评价该算法的有效性,将其与分岔算法、中间点节点划分聚类算法和混合算法进行了比较。仿真结果表明,所提出的算法能够根据选择准则给出最优导频总线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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