一种基于阻抗的局部测量抽头线路故障定位算法

A. Esmaeilian, M. Kezunovic
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引用次数: 10

摘要

抽头线路通常用于为小型社区或工业设施等客户提供经济的解决方案,这种解决方案比建造一个完整的变电站便宜。由于抽头线路的进/出电流的影响以及电抗的影响,这类线路的故障定位比较困难。该方法采用故障回路电压和电流的广义模型来制定故障定位算法。导出的算法具有非常简单的一阶公式,并且不需要了解来自另一端的数据。在可能不存在与其他端交换数据的通信链路的孤立农村地区,这一特点变得更加重要。仿真结果验证了该算法在各种等效源阻抗、故障起始角、故障电阻和故障位置以及故障类型等方面具有较高的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An impedance based fault location algorithm for tapped lines using local measurements
The tapped lines are usually used to supply a customer such as small communities or industrial facilities with an economic solution that is less expensive than building a full substation. Locating faults in such lines are difficult due to the effect of infeed/outfeed current from tapped lines as well as reactance effect. The proposed method applies generalized models of fault loop voltage and current to formulate the fault location algorithm. The derived algorithm has a very simple first-order formula and does not require knowledge of data from the other ends. This feature becomes more significant in the case of isolated rural areas where communicational link to exchange data with other ends may not exist. The result of the algorithm performance evaluation using simulations verifies the high accuracy of the method with regard to various equivalent source impedances, fault inception angles, fault resistances and locations as well as fault types.
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