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Multiple Chirp Reflectometry for Determination of Fault Direction and Localization in Live Branched Network Cables

机译:用于确定带电分支网络电缆故障方向和定位的多重Chi反射法

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This paper proposes a multiple inductive coupler chirp reflectometry system with multiple resolutions that can determine fault direction, and localize fault is proposed to apply the live target cable. The multiple resolution method enables us to detect and localize the faults, regardless of their location. Time delay information from multiple couplers, which is derived from the time-frequency cross correlation, indicates the fault direction and fault distance, even in cable branched network. The multiple inductive couplers system is proposed to obtain the velocity of propagation and fault direction in cable branch. Using the overcomplete wavelet transform, the signal restoration process can be carried out under signal distortion due to the propagation characteristics of the inductive coupler and target cable. In addition, combining notch filtering techniques and chirp reflectometry method is proposed to cancel 60-Hz harmonic noise, which is acquired from the actual substation. Through the experiments, impedance discontinuity localization and direction determination performance of the proposed method and the adaptability of the proposed method in live cable under harmonic noise by comparing with the existing method were verified.
机译:本文提出了一种可以确定故障方向的具有多种分辨率的多电感耦合线性调频反射测量系统,并提出了定位故障的方法来应用带电目标电缆。多种分辨率方法使我们能够检测和定位故障,而不管其位置在哪里。来自多个耦合器的时延信息是从时频互相关中得出的,即使在电缆分支网络中,它也会指示故障方向和故障距离。为了获得电缆分支中的传播速度和故障方向,提出了一种多电感耦合器系统。由于感应耦合器和目标电缆的传播特性,使用超完备的小波变换,可以在信号失真的情况下执行信号恢复过程。此外,还提出了将陷波滤波技术与线性调频反射法相结合的方法,以消除从实际变电站获取的60Hz谐波噪声。通过实验,通过与现有方法的比较,验证了该方法的阻抗不连续性定位和方向确定性能,以及该方法在带电电缆中谐波噪声下的适应性。

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