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Introduction to lightning and AC power fault surge protection for telecom signaling cables

机译:电信信号电缆的雷电和交流电源故障电涌保护简介

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This paper provides an introduction to the types of lightning surges and AC power fault surges that commonly affect the signaling cables of telecom network infrastructure and terminal equipment. Discussion is limited to twisted-pair copper lines such as telephone tip/ring cables and Ethernet cables. Surge types addressed include induced surges caused by nearby lightning strikes, induced AC voltages caused by fault conditions in adjacent AC power cables, and events caused by direct-contact with AC power mains. The basic physical mechanisms that cause each type of surge event are explained, with attention to both theoretical predictions and real-world measurements. Interactions between the surge energy source and the connected equipment will cause various types of surge waveforms to appear on the affected cables. The resulting surges are characterized for both outside cable plant and for cables routed entirely within a building. The ways in which various international testing standards attempt to simulate these surge events are described. Examples of some industry-standard test procedures and compliance requirements are presented. Some general guidelines are provided for evaluating the surge tolerance of a given design based on an analysis of the applied surge and the available paths for surge currents to flow. This type of analysis will often identify potential weaknesses based strictly on a review of the proposed design, prior to performing any actual surge tests.
机译:本文介绍了通常影响电信网络基础设施和终端设备的信号电缆的雷电浪涌和交流电源故障浪涌的类型。讨论仅限于双绞铜线,例如电话头/环形电缆和以太网电缆。解决的电涌类型包括附近雷击引起的感应电涌,相邻交流电源电缆中的故障情况引起的感应交流电压以及与交流电源直接接触引起的事件。解释了导致每种类型的电涌事件的基本物理机制,同时注意理论预测和实际测量。电涌能量源和连接的设备之间的相互作用将导致各种类型的电涌波形出现在受影响的电缆上。产生的电涌对于外部电缆厂和完全在建筑物内布线的电缆都具有特征。描述了各种国际测试标准试图模拟这些喘振事件的方式。给出了一些行业标准测试程序和合规性要求的示例。提供了一些通用准则,用于基于对施加的电涌和电涌电流流动的可用路径的分析来评估给定设计的电涌容限。这种类型的分析通常会在执行任何实际的浪涌测试之前,严格根据提议的设计来确定潜在的弱点。

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