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Lightning strike on overhead telephone line: A case study of tanzania telecommunication company limited (TTCL)

机译:抛光罢工在顶上的电话线:以坦桑尼亚电信有限公司为例(TTCL)

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摘要

Recently there have been a growing concern over the lightning caused damages, and disturbances on the consumer operated equipments utilizing a telephone line. This concern has been attributed by the fact that most of today’s consumers’ equipments comprise of electronic devices or microprocessor controls that operate at low voltages, which can be superceded by even distant lightning strike. Lightning strike can be either direct or indirect, which causes induced voltage along the telephone lines when it strikes on to the line or at a distance from the line. In this paper the induced voltages on a conductor of 7m height above the ground are calculated as a function of distance from the strike point using Finite Difference Time Domain (FDTD) method, as it could be a necessary data for deciding the possible future protection scheme. It has been shown that finitely conducting ground (lossy case) has pronounced effects for lightning surge propagation and induced amplitude overvoltages along the telephone line above the ground and can not be neglected in the calculations of the induced overvoltages along the line due to lightning strike compared to an infinitely conducting ground (lossless case).
机译:最近已经有超过雷击造成损害的日益关注,以及对利用电话线的消费者操作设备的干扰。这种关注已经由一个事实,即今天的大多数消费者的设备包括在低电压下工作的电子设备或微处理器控制,可通过连远处的雷击所取代的原因。雷击可以是直接或间接的,这会导致沿着电话线路的感应电压时,它撞击到线或从线的距离。在本文中在地面以上7米高度的导体的感应电压作为距离从撞击点的函数使用时域有限差分(FDTD)法计算出的,因为它可以是一个必要的数据用于决定将来可能保护方案。它已经显示出有限导电接地(有损情况下)已经沿地面上方的电话线显着为雷击浪涌的传播效应,并诱导振幅过电压,并且不能在沿线感应过电压的由于雷击的计算相比,可以忽略不计到无限导电接地(无损情况)。

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