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Lowpass FSS for 50-230 GHz Quasi-Optical Demultiplexing for the MetOp Second Generation Microwave Sounder Instrument

机译:用于MetOp第二代微波探测仪的50-230 GHz准光解复用的低通FSS

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摘要

This paper reports the design, manufacture and characterisation of a new frequency selective surface (FSS) structure which meets the demanding requirements for transmission of 50.2 − 57.7 GHz radiation simultaneously for TE and TM polarizations at 45° incidence, and reflection of signals in four discrete higher frequency bands centered at 89 GHz, 165.5 GHz, 183.3 GHz and 229 GHz. The FSS is required for a quasi-optical network, which was developed during preparatory breadboarding of the Microwave Sounder instrument. The 100 mm diameter ultra-wide band FSS must exhibit ≤0.25 dB loss for all signals in the above bands, and has to satisfy the requirements of the space environment. The FSS is formed by a periodic metal film array sandwiched between two 0.83 mm thick, optically flat, fused quartz substrates. It has 19,000 unit cells composed of two compact resonant slot elements, a meandering elliptical annulus and a folded dipole. Spectral transmission and reflection measurements in the 50 − 230 GHz frequency range yielded results that are in excellent agreement with numerical predictions.
机译:本文报道了一种新的频率选择表面(FSS)结构的设计,制造和表征,该结构可以同时满足在45°入射时TE和TM偏振同时传输50.2-57.7 GHz辐射和信号反射的四个要求。以89 GHz,165.5 GHz,183.3 GHz和229 GHz为中心的更高频段。准光学网络是FSS所必需的,准光学网络是在微波测深仪仪器的准备实验板上开发的。对于上述频带中的所有信号,直径为100 mm的超宽带FSS必须表现出≤0.25 dB的损耗,并且必须满足空间环境的要求。 FSS由夹在两个0.83 mm厚,光学平坦的熔融石英基板之间的周期性金属膜阵列形成。它有19,000个单位单元,由两个紧凑的谐振槽单元,一个弯曲的椭圆环和一个折叠的偶极子组成。在50 − 230 GHz频率范围内的光谱透射和反射测量结果与数值预测非常吻合。

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