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Deviations of conducted disturbance voltages measured with AMN due to differences in height of the AMN and its grounding conditions

机译:由于AMN的高度及其接地条件的差异,使用AMN测量的传导干扰电压的偏差

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This paper describes the results of calculating and measuring deviations of conducted disturbance voltages caused by differences in the arrangement of an artificial mains network (AMN) used to measure the voltage, for example, the height of the (AMN) from a horizontal reference ground plane and the connection between the AMN and the ground plane. The results indicated that the conducted disturbance voltage can be underestimated when using an arrangement in which the AMN is set on a 40-cm-high non-conductive support as specified in CISPR 16-2-1 edition 2.0. The deviations increased as the frequency increased and the width of the grounding conductor became narrower. The largest deviations were observed when using a cable connection between the AMN and the horizontal reference ground plane. Resonance due to stray capacitances between the AMN and grounding conductor caused larger deviations. To minimize the deviations, these results should be taken into account when using the arrangement in which the AMN is set on a 40-cm-high non-conductive support.
机译:本文介绍了计算和测量传导干扰电压偏差的结果,这些传导干扰电压偏差是由用于测量电压的人工干线网络(AMN)的布置差异引起的,例如,从水平基准接地平面到该干线的高度(AMN)以及AMN与接地层之间的连接。结果表明,当使用将AMN设置在CISPR 16-2-1版本2.0中指定的40厘米高的非导电支架上时,可以低估传导干扰电压。随着频率的增加和接地导体的宽度变窄,偏差也会增加。在AMN和水平参考接地层之间使用电缆连接时,观察到最大的偏差。由于AMN与接地导体之间的杂散电容而引起的谐振会导致较大的偏差。为了使偏差最小化,在使用将AMN放置在40厘米高的非导电支撑物上的布置时,应考虑这些结果。

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