Diffraction synthesis of dual-reflector antennas considering array feed, blockage, and near-field effect

D. Duan, Y. Rahmat-Samii
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引用次数: 2

Abstract

A diffraction synthesis technique for reflector shaping based on orthogonal global surface expansion and optimization techniques was presented by Y. Rahmat-Samii and J. Mumford (1989). The key step is to parameterize the antenna system under investigation, and determine the optimum values of these parameters using an optimization algorithm. A diffraction analysis computer program is used to compute the radiated fields in the course of optimizing an object (cost) function defined by the computed and the desired field quantities. An important feature of this optimization approach is that no more approximations than those assumed in the analysis are required. This implies that, in contrast to the geometrical optics (GO) synthesis methods, diffraction phenomena, near-field effect, and blockage effect can be taken into account automatically. In the present work, typical results on the application of this versatile diffraction synthesis technique to dual-reflector antennas fed by a single point source or array horn feeds are presented.<>
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考虑阵列馈电、阻塞和近场效应的双反射面天线衍射合成
Y. Rahmat-Samii和J. Mumford(1989)提出了一种基于正交全局表面展开和优化技术的反射面整形衍射合成技术。关键步骤是对所研究的天线系统进行参数化,并使用优化算法确定这些参数的最优值。利用衍射分析计算机程序对目标(代价)函数进行优化,并根据计算的场量和期望的场量对目标(代价)函数进行优化。这种优化方法的一个重要特征是,除了分析中假设的近似值外,不需要更多的近似值。这意味着,与几何光学(GO)合成方法相比,可以自动考虑衍射现象、近场效应和阻塞效应。在本工作中,介绍了这种多功能衍射合成技术在单点源或阵列喇叭馈电的双反射面天线中的典型应用结果。
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