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Gaussian-beam analysis of a large adaptive reflector antenna (LAR) using a feed-reflector

机译:使用馈源反射器的大型自适应反射器天线(LAR)的高斯光束分析

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A novel approach for analysing the quasi-optical large adaptive reflector Cassegrain system is described. In this system a feed-reflector is used to illuminate a hyperboloid sub-reflector with 5-10 m diameter, located 500 m above the ground. In the proposed method of analysis the feed-reflector aperture field distribution is expanded into a set of Gaussian-Laguerre modes. These modes propagate from the feed-reflector aperture in a simple and well defined way. The feed-reflector near-field radiation pattern is calculated at the subreflector location. The subreflector parameters in this system are found by maximising the LAR aperture efficiency, which includes phase and taper efficiencies, and minimising the LAR spillover loss. This process is computationally more efficient than the physical-optics current-distribution method and more accurate than the ray-tracing approach. It also provides a new insight into the operation of the feed-reflector system.
机译:描述了一种用于分析准光学大型自适应反射器卡塞格林系统的新颖方法。在该系统中,使用馈电反射器照亮位于地面以上500 m的直径为5-10 m的双曲面次反射器。在提出的分析方法中,前馈反射器孔径场分布扩展为一组高斯-拉格勒模式。这些模式以简单且定义明确的方式从进给反射器孔传播。在副反射镜的位置计算进给反射镜的近场辐射方向图。通过最大化LAR孔径效率(包括相位和锥度效率)并最小化LAR溢出损耗,可以找到该系统中的副反射器参数。该过程在计算上比物理光学电流分配方法更有效,并且比射线跟踪方法更准确。它还提供了对馈电反射器系统操作的新见解。

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