Testing of microwave shielding gaskets and cover panels-recent work at Rome Laboratories

J. Quine, C. Brown, K. Fisher, J.P. Streeter, A. Pesta
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引用次数: 2

Abstract

This paper discusses the experimental characterization at microwave frequencies of leakage sources such as gasketed seams and attenuating cover panels by methods that employ a reverberation chamber (REVCH) to measure the total power radiated into the REVCH by the leakage source. The preferred characterization of a leakage source is in terms of the effective transmission area (ETA) defined as the total radiated leakage power (watts) divided by the microwave flux (watts per square meter) incident on the leakage source from outside the REVCH. Several sources of error that can occur in measuring ETA are identified, non-uniformities in material and cross-sectional dimensions of the test panel or gasket being a significant source of error. The non-uniformities can result in "hot spots" which have unknown size and position along the length of a gasket or over the area of a panel, and therefore, can have uncertain power coupling into the REVCH. The results presented in this paper indicate clearly the need to further modify MIL-STD-285 to include a requirement for some form of mode stirring. Furthermore, "ETA" should be adopted as a preferred characterization for the microwave shielding performance of gaskets and cover panels.
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微波屏蔽垫片和盖板的测试——罗马实验室最近的工作
本文采用混响室(REVCH)测量泄漏源辐射到REVCH的总功率的方法,讨论了衬垫接缝和衰减盖板等泄漏源在微波频率下的实验特性。泄漏源的优选表征是有效传输面积(ETA),其定义为总辐射泄漏功率(瓦)除以从REVCH外部入射到泄漏源的微波通量(瓦/平方米)。确定了在测量ETA时可能发生的几个误差来源,材料和测试面板或垫片的横截面尺寸的不均匀是一个重要的误差来源。这种不均匀性可能导致“热点”的大小和位置未知沿垫片的长度或面板的面积,因此,可以有不确定的功率耦合到REVCH。本文提出的结果清楚地表明,需要进一步修改MIL-STD-285,以包括对某种形式的模态搅拌的要求。此外,应采用“ETA”作为衬垫和盖板微波屏蔽性能的首选表征。
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