Analysis of high impedance faults using fractal techniques

Alexander Mamishev, B. Russell, C. Benner
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引用次数: 131

Abstract

Phase currents and voltages in a power distribution system change with a certain degree of chaos when high impedance faults (HIFs) occur. This paper describes application of the concepts of fractal geometry to analyze chaotic properties of high impedance faults. Root-mean-square rather that instantaneous values of currents are used for characterization of temporal system behavior; this results in relatively short time-series available for analysis. An algorithm is presented for pattern recognition and detection of HIFs; it is based on techniques suited for analysis of relatively small data sets. Examples are given to illustrate the ability of this approach to discriminate between faults and other transients in a power system.
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用分形技术分析高阻抗故障
当发生高阻抗故障时,配电系统的相电流和电压会发生一定程度的混沌变化。本文介绍了分形几何概念在分析高阻抗故障混沌特性中的应用。均方根而不是电流的瞬时值被用来表征时间系统的行为;这导致相对较短的时间序列可用于分析。提出了一种hif的模式识别与检测算法;它基于适合于分析相对较小的数据集的技术。举例说明了这种方法在电力系统中区分故障和其他暂态的能力。
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