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Dual Layer Morgan Lens Synthesis

机译:双层摩根镜片合成

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The paper presents a dual layer planar gradient lens that transforms point feed element located at the lower layer into a surface plane wave at the upper layer. Thus feed elements do not prevent plane wave radiation into free space and effect of shading is excluded. Therefore dual layer lens potentially provides 3600 degree sector of observation in contrast to a conventional single layer planar gradient lens which observation sector is limited by the effect of shading. This paper presents an approach for dual layer Morgan lens synthesis based on symmetry principle and coupled mode theory. This approach gives spatial distribution of planar waveguides generalized parameters: propagation constant and coupling coefficient. The second stage of synthesis procedure is structural synthesis that gives one spatial distribution of planar waveguides geometrical parameters. This stage is presented for particular case of a coupled planar dielectric waveguides.
机译:本文呈现了双层平面梯度透镜,其将位于下层的点进料元件变换为上层的表面平面波。因此,进料元件不会防止平面波辐射进入自由空间,并且排除着色的效果。因此双层镜头可能提供360 0 与传统的单层平面梯度透镜相比,观察的学位扇区,观察部门受阴影的影响受到限制。本文介绍了一种基于对称原理和耦合模式理论的双层摩根晶状体合成的方法。该方法为平面波导广义参数提供空间分布:传播恒定和耦合系数。合成程序的第二阶段是结构合成,其给出了平面波导几何参数的一个空间分布。为耦合平面介电波导的特定情况呈现该阶段。

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