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Full-wave and multi-GTD analysis of the ice cloud imager for MetOp-SG

机译:MetOp-SG的冰云成像仪的全波和多GTD分析

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We report an RF study at 50 GHz of the Ice Cloud Imager, consisting of a parabolic reflector inside a semi-closed sun shield, as obtained with full-wave method of moments (MoM) and the asymptotic high-frequency multi-geometrical theory of diffraction (Multi-GTD) method. The Multi-GTD results accurately reproduce details of the main beam and sidelobes originating from focusing, but fail to predict other parts of the pattern that are due to a large number of scattering events inside the semi-closed sun shield. MoM results at the half and double frequency (25 and 100 GHz) show that the parts of the pattern that are not well described by Multi-GTD, but still within the dynamic MoM range, remain at the same overall level as the frequency is varied. Thus, when analyzing at higher frequencies of interest (≥ 183 GHz), a complementary MoM and Multi-GTD approach can be adopted to predict the radiation pattern.
机译:我们报告了冰云成像仪在50 GHz的RF研究,该研究由半封闭遮阳罩内的抛物线反射镜组成,该反射镜是通过矩全波法(MoM)和渐近高频多几何理论获得的。衍射(Multi-GTD)方法。 Multi-GTD结果精确地重现了源自聚焦的主光束和旁瓣的细节,但由于半封闭遮阳罩内部存在大量散射事件,因此无法预测图案的其他部分。在一半和两倍频率(25 GHz和100 GHz)下的MoM结果表明,Multi-GTD不能很好地描述但仍在动态MoM范围内的模式部分在频率变化时保持在相同的总体水平。因此,当以较高的感兴趣频率(≥183 GHz)进行分析时,可以采用互补式MoM和Multi-GTD方法来预测辐射方向图。

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