Influence of line routing and terminations on transient overvoltages in LV power installations

I. Metwally, F. Heidler
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引用次数: 4

Abstract

Surge protective devices (SPDs) are installed at the boundaries of lightning protection zones (LPZs) to damp the surges to the protection level of the SPD. If the circuit between the SPD and the apparatus to be protected is too long, the propagation of the surges leads to oscillation phenomenon. In this case, the overvoltage can be increased at the apparatus terminals. The increase is taken into account by an enhancement factor which gives the ratio of the maximum overvoltage at the apparatus terminals to the SPD protective level. According to IEC 62305-4, the maximum enhancement factor is considered to be equal to two in the worst case of open-circuit condition. The objective of the present paper is to check this relation for equipment connected to low-voltage (LV) power system. The LV power system is considered as TN-S system with different routings in a three-storey building. The terminals of apparatus are substituted by different loads. All Maxwell’s equations are solved by the method of moments and the voltage is calculated at the apparatus terminals. The SPD itself is simulated by a voltage source at the ground floor of the building. The results reveal that the apparatus terminal voltage may overshoot the SPD protection level by a factor of 3.
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线路走线和终端对低压电力装置暂态过电压的影响
防雷器(Surge protection devices,简称SPD)安装在防雷区边界处,可以起到抑制浪涌的作用,使其达到防雷器的保护水平。如果防雷器与被保护设备之间的电路过长,则浪涌的传播会导致振荡现象。在这种情况下,可以在设备端子处增加过电压。增加是通过一个增强因子来考虑的,该因子给出了设备端子处的最大过电压与SPD保护水平的比值。根据IEC 62305-4,在开路的最坏情况下,最大增强因子被认为等于2。本文的目的是检查连接到低压(LV)电力系统的设备的这种关系。将一栋三层建筑的低压电源系统考虑为不同走线的TN-S系统。设备的端子用不同的负载代替。所有的麦克斯韦方程组都用矩量法求解,并计算了仪器两端的电压。防雷器本身由位于建筑物底层的电压源模拟。结果表明,装置端电压可能超过防雷器保护等级3倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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