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Hybrid analysis of reflector antennas including higher order interactions and blockage effects

机译:反射器天线的混合分析,包括高阶相互作用和阻挡效应

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The analysis of a reflector antenna system consisting of a feeder, a sub-reflector, and a main-reflector in microwave frequency bands, where the electrical dimensions of the antenna become prohibitively large for the use of a rigorous numerical method, has been performed by high-frequency asymptotic techniques (HFATs). As a result, the radiation patterns and input impedances of the antenna system were calculated based on an approximation: the radiation characteristics of the feed, sub-reflector and main-reflector are independent from each other. In this study, as an effort to alleviate the inaccuracy due to the exclusion of higher order mutual interactions existing among those subsystems, three different hybrid methods [finite-element method/method of moment (FEM/MOM) + physical optics (PO), FEM/MOM + geometrical theory of diffraction (GTD), and FEM/MOM + PO + physical theory of diffraction (PTD)] are introduced in the context of an iterative algorithm. The interactions between the feed and sub-reflector are accounted by a hybrid method which combines the FEM with the MOM; FEM/MOM. Whereas, the interactions between the objects in the FEM/MOM domain and the main-reflector are taken into account through the iteration: the fields and currents in the FEM/MOM domain are updated using the fields and currents obtained from the HFAT domain and vise-versa. These three methods are applied to two-dimensional reflector configurations, and corresponding results are compared in terms of accuracy and efficiency. The accuracy of the hybrid methods, especially those of FEM/MOM + GTD and FEM/MOM + PO + PTD, is found to be comparable to that of a rigorous numerical method. Furthermore, their computational costs are almost independent to the size of the main-reflector and to the distance from the feed point to the main-reflector.
机译:已经通过以下方法对由微波频带中的馈线,副反射器和主反射器组成的反射器天线系统进行了分析,其中使用严格的数值方法使天线的电气尺寸变得过大。高频渐近技术(HFAT)。结果,基于以下近似计算天线系统的辐射方向图和输入阻抗:馈源,副反射器和主反射器的辐射特性彼此独立。在这项研究中,为减轻由于子系统之间存在的更高阶互作用而导致的不准确性,尝试了三种不同的混合方法[有限元方法/矩量法(FEM / MOM)+物理光学(PO),在迭代算法的背景下,介绍了FEM / MOM +衍射几何理论(GTD)和FEM / MOM + PO +衍射物理理论(PTD)。馈电和副反射镜之间的相互作用是通过将FEM和MOM结合在一起的混合方法来解决的。 FEM / MOM。鉴于此,通过迭代考虑了FEM / MOM域中的对象与主反射器之间的相互作用:FEM / MOM域中的场和电流使用从HFAT域和虎钳获得的场和电流进行更新。 -反之亦然。将这三种方法应用于二维反射器配置,并在准确性和效率方面比较了相应的结果。发现混合方法的准确性,尤其是FEM / MOM + GTD和FEM / MOM + PO + PTD的准确性,可以与严格的数值方法相媲美。此外,它们的计算成本几乎与主反射器的尺寸以及从馈电点到主反射器的距离无关。

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