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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Layered Circular-Cylindrical Dielectric Lens Antennas—Synthesis and Height Reduction Technique
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Layered Circular-Cylindrical Dielectric Lens Antennas—Synthesis and Height Reduction Technique

机译:层状圆柱电介质透镜天线—合成和减高技术

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摘要

An accurate computer-aided-design tool has been developed for the synthesis of broadband layered circular-cylindrical dielectric lens antennas. It is based on the combination of a fast method of analysis formulated in the spectral domain with a global optimization algorithm based on the particle swarm optimization technique. Using this tool, the influence of the number of layers is studied for lenses of moderate size. We show that single-layer lenses with an optimum permittivity value have nearly the same radiation characteristics as optimized multi-layer configurations. Finally we introduce a new height reduction technique that allows reducing the lens size by almost a factor of two while retaining the fan-beam pattern capabilities of cylindrical lenses in the elevation plane as well as their axial-symmetry needed for beam scanning in the horizontal plane. Numerical results have been compared successfully with experimental ones from 26 to 40 GHz, to validate the analysis.
机译:已经开发出一种精确的计算机辅助设计工具,用于合成宽带层状圆柱电介质透镜天线。它基于在谱域中制定的快速分析方法与基于粒子群优化技术的全局优化算法的结合。使用此工具,可以研究中等大小的镜片的层数影响。我们显示出具有最佳介电常数值的单层透镜具有与优化的多层配置几乎相同的辐射特性。最后,我们引入了一种新的高度减小技术,该技术可以将透镜尺寸减小近两倍,同时保留圆柱透镜在仰角平面中的扇形光束图案功能以及在水平平面中进行光束扫描所需的轴向对称性。数值结果已成功与26至40 GHz的实验结果进行了比较,以验证分析结果。

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