Directivity of equipment and its effect on testing in mode-stirred and anechoic chamber

L. Jansson, M. Backstrom
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引用次数: 49

Abstract

If radiated susceptibility testing in a mode-stirred chamber (MSC) is used to test equipment that in its real operation may become irradiated by plane waves it is necessary to increase the test level, i.e. add a margin. In order to find out typical magnitudes of this margin coupling measurements to the interior of several objects have been carried out both in mode-stirred and anechoic chamber (AC). The results show that the maximum coupling in the anechoic chamber is 10-15 dB higher than the coupling measured in the mode-stirred chamber. Also, the assumption of isotropic field conditions in the mode-stirred chamber is strongly supported by the measurements. Finally, it is shown that the statistical distribution of the equipment's internal field when rotating the stirrer in an MSC is not the same as when the angle of incidence is varied in an AC.
设备指向性及其对搅拌模室和消声室测试的影响
如果在模式搅拌室(MSC)中进行辐射敏感性试验,以测试在实际操作中可能受到平面波照射的设备,则有必要提高测试水平,即增加裕度。为了找出这种边界耦合的典型大小,在模式搅拌和消声室中对几个物体的内部进行了测量。结果表明,消声室的最大耦合比模态搅拌室高10 ~ 15 dB。同时,实验结果也有力地支持了模态搅拌室内各向同性场条件的假设。最后,研究结果表明,当搅拌器在MSC中旋转时,设备内部场的统计分布与在交流中改变入射角时不相同。
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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