Improving the Performances of a Reverberation Chamber: a Real Case

M. Pocai, I. Dotto, D. Festa, G. D'Abreu
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引用次数: 5

Abstract

In a previous measurement campaign [1] it was found that the reverberation chamber (RC) of CISAM EMC Department evidenced anomalous values of the Quality factor (Q) - too low to be "right" for a fully aluminum chamber - and moreover, after some use it became absolutely evident that it was too easy to improve - lowering it, of course - the value of the Lowest Usable Frequency (LUF) of this chamber. After some investigations on the chamber materials/components and on the assembly procedures, the authors developed the idea that this strange behavior had to be attributed to the tuners - being the original ones made with somehow absorbing material - and therefore they decided to replace them with new, all metal tuners. In this paper, the results of a calibration campaign on the reverberation chamber after tuner replacement are presented, as well as the results of an emission test on a standard reference source before and after the replacement. The calibration has been done in the frequency range 80 MHz ÷ 3 GHz, and the emission tests have been performed in the range 100 MHz to 1 GHz, which is exactly the frequency range of the reference radiator used to generate a standard spectrum. The comparison between the results obtained, under the same conditions, with the old and with the new tuners is presented, and the goodness of the assumptions demonstrated: with the new tuners the performances of the chamber have been considerably improved.
提高混响室的性能:一个真实案例
在之前的测量活动[1]中,发现CISAM EMC部门的混响室(RC)证明了质量因子(Q)的异常值-太低而不适合全铝室-此外,经过一些使用后,它变得非常明显,太容易改进-当然降低它-该室的最低可用频率(LUF)的值。在对腔室材料/组件和组装程序进行了一些调查之后,作者提出了一种想法,即这种奇怪的行为必须归因于调谐器-是由某种吸收材料制成的原始调谐器-因此他们决定用新的全金属调谐器代替它们。本文介绍了在更换调谐器后对混响室进行校准的结果,以及在更换调谐器前后对标准参考源进行发射测试的结果。在80 MHz ÷ 3 GHz的频率范围内进行了校准,在100 MHz至1 GHz的频率范围内进行了发射测试,该频率范围正是用于产生标准频谱的参考辐射器的频率范围。在相同的条件下,对新旧调谐器的计算结果进行了比较,证明了假设的正确性:使用新调谐器后,腔室的性能得到了很大的改善。
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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