Fault analysis of multi-phase unbalanced non-radial power distribution systems

S. Halpin, L. Grigsby
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引用次数: 14

Abstract

Algorithms are presented in this paper for the accurate determination of voltages, currents, and power flows in faulted three-phase unbalanced nonradial power distribution systems. The calculation of steady-state fault currents begins from a converged power flow solution and uses generalized models for all power system components. These component models are formulated using a linear graph theory approach to network modeling. The linear graph modeling techniques are extended to form an admittance matrix system model. The three-phase source and load models that are used are based on an extension of the traditional models used to represent these elements in fault studies using symmetrical components. The distribution system model consisting of sources, loads, lines, transformers, and other components is modified to account for the fault and solved to yield the line-to-neutral voltages at each bus in the faulted distribution system. The faulted system current and power flows are determined using these voltages. The results obtained using the proposed modeling approach on a system provided by a local industry are compared with the results obtained from an existing classical three-phase fault analysis algorithm, and conclusions are drawn based on these comparisons.<>
多相不平衡非径向配电系统故障分析
本文提出了在三相非径向不平衡故障配电系统中准确测定电压、电流和潮流的算法。稳态故障电流的计算从一个收敛的潮流解开始,并对所有电力系统组件使用广义模型。这些组件模型是使用线性图论方法制定的网络建模。将线性图建模技术扩展为导纳矩阵系统模型。所使用的三相电源和负载模型是基于传统模型的扩展,在故障研究中使用对称组件来表示这些元素。由源、负载、线路、变压器和其他部件组成的配电系统模型被修改以解释故障,并求解出故障配电系统中各母线对中性点的电压。用这些电压来确定故障系统的电流和功率流。将所提出的建模方法与现有的经典三相故障分析算法的结果进行了比较,并在此基础上得出结论。
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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