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Reflecting Luneburg Lens: Analytical Solution and Applications

机译:反射莱蒙斯镜头:分析解决方案和应用

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This paper presents the closed-form solution for a new type of lens beamformer, which consists of two stacked parallel plate waveguides (PPWs) of circular shape. The rays launched by a source at the rim of the bottom PPW are collimated in the top PPW after being reflected at a cylindrical metallic wall that surrounds both layers. Since it reproduces the behavior of the Luneburg lens for reflected rays, this lens is hereinafter referred to as Reflecting Luneburg lens (RLL). The refractive index profile for the azimuthally symmetric circular domain is found by solving the non-linear integral equation of ray-congruence through a truncated Abel transform method. The validity of the derived exact formula is verified by full-wave simulations, practical implementation and possible applications of RLLs in antenna systems are also briefly discussed.
机译:本文介绍了一种新型透镜波束形成器的闭合溶液,其由圆形的两个堆叠的平行板波导(PPW)组成。 在围绕两个层的圆柱形金属壁上反射之后,由底部PPW的边缘发射的光线在顶部PPW中准直。 由于它再现Luneburg透镜的行为,用于反射光线,因此该透镜在下文中称为反射函数镜头透镜(RLL)。 通过求通过截短的ABEL变换方法求解光线累积的非线性积分方程,发现方位称对称圆形域的折射率分布。 通过全波模拟验证派生精确公式的有效性,还简要讨论了天线系统中RLL的实际实施和可能的应用。

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