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Unsymmetrical Short-Circuit Fault Analysis for Weakly Meshed Distribution Systems

机译:弱网状配电系统的非对称短路故障分析

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摘要

Due to the integration of distributed generations and the realization of smart grids, most radial distribution systems would become weakly meshed in the near future. Thus, this paper proposes an efficient and accurate short-circuit fault-analysis method for unbalanced weakly meshed distribution systems. Two proposed matrices developed from the radial and weakly meshed characteristics of distribution systems are used to analyze the variations of bus voltages, bus-current injections, and branch currents under fault conditions. Accordingly, some efficient and effective formulas are derived in this paper to analyze the effects of different fault types on the weakly meshed distribution systems. Traditionally, unsymmetrical faults are analyzed by the symmetrical-component-based method; however, this method is usually time-consuming due to the building process of impedance matrix. The proposed method can provide novel viewpoints in calculating fault effects; and therefore, can achieve the advantages of high speed and improved accuracy with lower memory requirements. Test results demonstrate the efficiency and accuracy of the proposed method.
机译:由于分布式发电的集成和智能电网的实现,大多数径向配电系统将在不久的将来变得脆弱。因此,本文提出了一种用于不平衡弱网格分布系统的高效,准确的短路故障分析方法。根据配电系统的径向和弱啮合特性开发了两个建议的矩阵,用于分析故障条件下的母线电压,母线电流注入和支路电流的变化。因此,本文推导了一些有效的公式来分析不同断层类型对弱网格分配系统的影响。传统上,非对称故障是通过基于对称分量的方法来分析的。然而,由于阻抗矩阵的建立过程,该方法通常很耗时。该方法可以为计算故障效果提供新的观点。因此,可以以较低的内存需求实现高速和提高精度的优势。测试结果证明了该方法的有效性和准确性。

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