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A Noniterative Method for Locating Soft Faults in Complex Wire Networks

机译:复杂有线网络中软故障定位的非迭代方法

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摘要

Reflectometry-based methods are the standard choice for fault-detection techniques in wire networks. While effective when dealing with simple networks and relatively hard faults, their results can be of more difficult interpretation if a network presents more than two branches. In this paper, we propose the use of an alternative technique based on a coherent multiport characterization of a network under test. The data thus collected are used to define excitation signals that will be focusing over the position of a fault, following a method already successfully applied in geophysical prospection techniques and nondestructive testing, namely, the DORT method, based on the synthesis of time-reversed signals. It is shown that a direct transposition of this technique to wire networks is not possible, due to the guided nature of wave propagation in wire networks, leading to the impossibility of assuming a dominant direction of propagation, as opposed to the case of propagation in open media. A differential version of the DORT method is introduced, enabling an accurate identification of the original position of faults. Numerical and experimental results are presented to demonstrate the feasibility of this approach.
机译:基于反射法的方法是有线网络中故障检测技术的标准选择。虽然在处理简单网络和相对困难的故障时很有效,但如果网络存在两个以上的分支,则其结果可能难以解释。在本文中,我们建议使用基于被测网络的一致多端口表征的替代技术。如此收集的数据被用来定义激励信号,该信号将集中在断层的位置上,这是基于时间反转信号合成的一种已成功应用于地球物理勘探技术和无损检测的方法,即DORT方法。 。结果表明,由于有线网络中波传播的引导特性,不可能将该技术直接转换为有线网络,这导致与开放式传播情况相反,不可能假设传播的主导方向媒体。引入了DORT方法的差分版本,从而可以准确识别故障的原始位置。数值和实验结果表明了该方法的可行性。

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