首页> 外文会议>Canadian Conference on Electrical and Computer Engineering >LOCATING WATER INGRESS IN TELEPHONE CABLES USING FREQUENCY DOMAIN REFLECTOMETRY
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LOCATING WATER INGRESS IN TELEPHONE CABLES USING FREQUENCY DOMAIN REFLECTOMETRY

机译:使用频域反射仪定位在电话电缆中的水入口

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It is important to locate water ingress in telephone cables because water severely attenuates DSL signals used for Internet access. The paper initially reviews the frequency domain reflectometry method and how it measures the distance, magnitude and phase angle of reflections caused by transmission line discontinuities [1J. When water enters a cable it lowers the magnitude and angle of the characteristic line impedance, causing reflections at the points where the water starts and ends. The dry and wet characteristic impedances of a 300-meter section of telephone line were experimentally measured and the reflection coefficient was estimated to have a phase angle of 20°. Measurements of a properly terminated telephone line with 300 meters of the line immersed in water showed a first reflection with a phase angle of 162° (180°-18°). A second reflection, from the end of the wet section, was measured with a phase angle of 25°. These reflection angles differ from the 0° or 180° typical of bridge taps, open circuits or short circuits and this allows a technician to specifically identify water ingress.
机译:为在电话电缆中找到水入的东西很重要,因为水严重衰减用于互联网接入的DSL信号。本文最初审查频域反射测量方法以及如何测量传输线路不连续引起的反射距离,幅度和相位角度[1J。当水进入电缆时,它会降低特征线阻抗的幅度和角度,导致水从中开始和结束的点处的反射。通过实验测量300米的电话线部分电话线的干燥和湿特性阻抗,估计反射系数为20°的相角。浸入水中300米的线的适当终止电话线的测量显示了具有162°(180°-18°)的相角的第一反射。从湿截面的末端使用25°的相位角测量第二反射。这些反射角度不同于典型的桥接水龙头,开路电路或短路的0°或180°,这允许技术人员专门识别进水。

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