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Accelerated Computation of Multiphase Short Circuit Summary for Unbalanced Distribution Systems Using the Concept of Selected Inversion

机译:基于选择反演概念的不平衡配电系统多相短路摘要的加速计算

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In this paper, an ultra-fast algorithm for the computation of multiphase short-circuit currents at all buses is proposed by addressing the concept of selected inversion. The short circuit summary is achieved through the computation of multiphase Thevenin equivalent at each bus by using the augmented nodal matrix. This typically requires the sequential solution of linear system of equations, i.e., direct inversion which can be demanding in terms of CPU time. In this paper, it is shown that dramatic gains in computational time can be obtained when the selected inversion (SelInv) technique is performed where only a subset of entries of the inverse of augmented nodal matrix is computed. These entries include the phase domain Thevenin impedances seen from network buses which are used in the computation of short-circuit currents with the predefined boundary conditions specific to the fault type. The performance of the method is demonstrated with very large scale and realistic distribution systems.
机译:在本文中,通过解决选择反转的概念,提出了一种用于计算所有母线上多相短路电流的超快速算法。短路总结是通过使用增强型节点矩阵通过计算每条总线上的多相戴维宁等效值来实现的。这通常需要对方程式的线性系统进行顺序求解,即直接反转,这可能在CPU时间方面要求很高。在本文中,表明了当执行选择的反演(SelInv)技术时,仅计算增强型节点矩阵逆项的一个子集,就可以在计算时间上获得巨大的收益。这些条目包括从网络总线看到的相域戴维宁阻抗,这些阻抗用于计算短路电流,并具有特定于故障类型的预定义边界条件。该方法的性能在非常大规模和现实的分配系统中得到了证明。

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