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Shielding effectiveness measurements in resonant enclosure based on loaded reverberation chamber in a GTEM cell

机译:基于GTEM单元中负载混响室的谐振外壳中的屏蔽效能测量

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A novel approach is introduced for measuring the shielding effectiveness in resonant conductive enclosures having apertures in a removable side wall. The measurement setup was based on GTEM cell as a compact field-generating environment, capable of accommodating small enclosures as DUTs. The signal was fed into the GTEM cell, thus creating a controlled incident field impinging on the enclosure. The field level inside the exposed enclosure was collected as the output signal. Shielding effectiveness was calculated as the ratio of the S21 parameter measured without the side wall attached to the enclosure, to the S21 parameter measured with the side wall attached, both averaged over the full rotation of the stirrer. Highly expressed resonances were attenuated by introducing the mechanical stirring into the enclosure, thus turning the inside of the enclosure into a reverberation chamber. Additionally, the resonant behavior of the enclosure was reduced by introducing the water containers within the enclosure volume as dissipative load, consequently lowering the enclosure Q factor. The results were in excellent agreement with the ones previously obtained using mode stirred technique.
机译:引入了一种新颖的方法来测量在可移动侧壁上具有孔的谐振导电外壳中的屏蔽效果。测量设置基于GTEM单元,它是一个紧凑的现场生成环境,能够容纳小外壳作为DUT。信号被馈送到GTEM单元中,从而产生撞击在外壳上的受控入射场。暴露的外壳内部的场水平被收集为输出信号。屏蔽效果的计算方式是:在搅拌器的整个旋转过程中,将未连接侧壁的侧壁上测得的S21参数与已连接侧壁的位置上测得的S21参数之比作为平均值。通过向外壳中引入机械搅拌,可以减弱高表达的共振,从而将外壳内部变成混响室。另外,通过将水容器作为耗散负载引入到外壳体积中来降低外壳的共振行为,因此降低了外壳的Q因子。结果与先前使用模式搅拌技术获得的结果非常吻合。

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