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A complete procedure for the design and optimization of arbitrarily shaped integrated lens antennas

机译:设计和优化任意形状的集成透镜天线的完整过程

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摘要

This paper proposes a new design methodology of arbitrarily shaped integrated lens antennas (ILAs). First, we describe the design principles and numerical techniques of the optimization iterative loop. The starting lens shape, deduced from a general synthesis method based on geometrical optics principles, is optimized so that the radiation pattern of the ILA complies with an arbitrary amplitude-shaped template. The optimization procedure is local and is based on a multidimensional conjugate gradient method. Then, the capabilities and potentialities of this approach are demonstrated numerically using two examples. In the first one, an ILA radiating a secant-squared beam in one principal plane and a flat-top beam in the orthogonal plane is designed for indoor communications in V-band. In the second example (Gaussian/flat-top beam), we show for the first time that the joint optimization of the feed together with the lens shape is a very promising design methodology. Finally, our design tools are validated experimentally in Q-band through the synthesis and optimization of a peculiar small shaped ILA (28 mm/spl times/28 mm/spl times/15 mm) fed by an aperture-coupled microstrip patch antenna.
机译:本文提出了一种任意形状的集成透镜天线(ILA)的新设计方法。首先,我们描述了优化迭代循环的设计原理和数值技术。从基于几何光学原理的一般合成方法得出的起始镜片形状经过优化,以使ILA的辐射方向图符合任意振幅形状的模板。优化过程是局部的,基于多维共轭梯度法。然后,使用两个示例对这种方法的功能和潜力进行了数值演示。在第一个中,ILA被设计用于在V波段进行室内通信,该ILA在一个主平面内发射正割平方光束,在正交平面内发射平顶光束。在第二个示例(高斯/平顶光束)中,我们首次展示了进给与透镜形状的联合优化是一种非常有前途的设计方法。最后,通过合成和优化由孔径耦合微带贴片天线馈入的特殊小形状ILA(28 mm / spl倍/ 28 mm / spl倍/ 15 mm),我们的设计工具在Q波段进行了实验验证。

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