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Electromagnetic Design of Calibration Targets for MetOp-SG Microwave Instruments

机译:MetOp-SG微波仪器校准标靶的电磁设计

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摘要

We describe the electromagnetic development of microwave calibration units for the second generation of meteorological operational satellites. In particular, we focus on the electromagnetic and thermal design of on-board calibration targets (OBCT) for the microwave sounder (MWS) and the ice cloud imager (ICI), respectively. The OBCTs act as temperature reference for calibration. Therefore, they are required to exhibit a low electromagnetic reflectivity and a uniform temperature. This paper discusses the numerical design of pyramid absorbers for MWS and ICI. Based on theoretical studies, we have developed a novel pyramid design, which exhibits superior electromagnetic and thermal properties compared with conventionally used layouts. A comprehensive numerical study on the impact of common types of manufacturing tolerances has been carried out, and the most critical types were identified. This work presents remedies that reduce the susceptibility to manufacturing tolerances. All numerical results have been verified experimentally, and the manufactured OBCT prototypes have been shown to fulfill the specific requirements in all frequency bands.
机译:我们描述了用于第二代气象卫星的微波校准装置的电磁发展。特别是,我们专注于分别针对微波探测器(MWS)和冰云成像仪(ICI)的机载校准目标(OBCT)的电磁和热设计。 OBCT用作校准的温度参考。因此,要求它们表现出低的电磁反射率和均匀的温度。本文讨论了MWS和ICI金字塔吸收器的数值设计。根据理论研究,我们开发了一种新颖的金字塔设计,与常规使用的布局相比,该金字塔设计具有出色的电磁和热性能。已对常见公差类型的影响进行了全面的数值研究,并确定了最关键的类型。这项工作提出了减少对制造公差的敏感性的补救措施。所有数值结果均已通过实验验证,并且已显示制造的OBCT原型可满足所有频段的特定要求。

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