Fault Analysis based on time-domain Symmetrical Components

Rodríguez C. Julio, G. Ramos, David F. Celeita
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引用次数: 2

Abstract

Symmetrical components theory, presented by Fortescue in 1918, and its analysis of the time domain presented by Lyon in 1954, have been widely used for fault analysis and power system protection algorithms. In recent times, applications in time domain have been deeply studied given their potential for getting a quicker failure detection, there are two main techniques which apply signal processing methods in the time domain: Travel-wave and incremental quantities. The theoretical background of symmetrical components to fault analysis is well recognized. Currently, the fault protection algorithms using symmetrical components are based on frequency domain. This paper presents a theoretical analysis of the use of symmetrical components in time domain, particularly in asymmetrical faults. A Signal processing algorithm to obtain the instantaneous symmetrical quantities from phases quantities are presented. A study case is simulated to validate the time domain technique and fault analysis permits show the potential of the results to develop protection algorithms.
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基于时域对称分量的故障分析
1918年Fortescue提出的对称分量理论和1954年Lyon提出的对称分量时域分析已被广泛应用于故障分析和电力系统保护算法中。近年来,在时域的应用已经得到了深入的研究,因为它们具有更快地检测故障的潜力,有两种主要的技术将信号处理方法应用于时域:行波和增量量。对称分量用于故障分析的理论背景是公认的。目前,采用对称分量的故障保护算法都是基于频域的。本文从理论上分析了对称分量在时域中的应用,特别是在非对称故障中的应用。提出了一种由相位量获得瞬时对称量的信号处理算法。通过实例仿真验证了时域技术的有效性,并对故障分析结果进行了验证,为进一步开发保护算法提供了可能。
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