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A Unified Method for Length Evaluation and Fault Locating of Branch Coaxial Cable Based on S-Parameters Measurements

机译:基于S参数测量的分支同轴电缆长度评价与故障定位的统一方法

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摘要

In this article, a unified method for fault locating and length measurement of the branch cable is proposed. First, typical two-port equivalent networks are extracted by means of a topology analysis of the branch cable, and their scattering parameters (S-parameters) are adopted to achieve the proposed method, due to their excellent performance on characterizing the wave propagation. Then, taking advantage of the inherent relation of the elements in the S-parameters matrix, the analytical formulae for evaluating the branch length and identifying the fault location in a branch cable are derived. This method is simple but effective and appears to be promising for real applications. Moreover, the proposed method is proved to be bound to identify the real fault location without ambiguity. In order to validate this method, some experiments with RG-59 cables are carried out and the accuracy of the proposed method is analyzed. Theory and examples also show its robustness against the fault impedance and terminations.
机译:在本文中,提出了一种用于分支电缆的故障定位和长度测量的统一方法。首先,通过分支电缆的拓扑分析提取典型的双端口等效网络,并且采用它们的散射参数(S参数)来实现所提出的方法,因为它们的表征波传播的优异性能。然后,利用S参数矩阵中的元件的固有关系,推导了用于评估分支长度和识别分支电缆中的故障位置的分析公式。这种方法简单但有效,似乎是真实应用的希望。此外,所提出的方法被证明必须在没有歧义的情况下识别真正的故障位置。为了验证该方法,对RG-59电缆进行了一些实验,分析了所提出的方法的准确性。理论和例子还表现出其对故障阻抗和终端的鲁棒性。

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