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Multifocal bootlace lens design concepts: a review

机译:多焦点鞋带镜片设计概念:综述

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Reflectors and lenses provide two optical mechanisms to magnify small apertures. There are a number of basic differences between the two structures. While the reflector system is less complex, it may, occupy more volume for the same features and suffers from blockage losses. The bootlace or Rotman lenses are more complex, have three multiple-element radiating structures, and offer more degrees of freedom that help in realizing multiple focal points. The three radiating structures are the feed array, the receiving array on one side of the lens, and the radiating array on the other side of the lens. The traditional bootlace lens is two dimensional, with feed points, receiving and transmitting arrays all lying on a plane. While this provides for easy stripline or printed circuit fabrications, there is no physical restriction from extending the formulations to three-dimensional structures. The process of optimizing the lens, aimed at increasing the number of focal points and minimizing the phase errors at other points, has produced lens designs with two to five focal points. The paper reviews some of these designs.
机译:反射镜和透镜提供两种光学机制来放大小孔。两种结构之间存在许多基本差异。虽然反射器系统不太复杂,但对于相同的功能,它可能会占用更多的体积,并且会遭受遮挡损失。靴带式或Rotman镜片更复杂,具有三个多元素辐射结构,并提供更多的自由度,有助于实现多个焦点。这三个辐射结构是馈电阵列,在透镜一侧的接收阵列和在透镜另一侧的辐射阵列。传统的bootlace透镜是二维的,馈电点,接收和发送阵列都位于一个平面上。尽管这提供了容易的带状线或印刷电路制造,但是从将配方扩展到三维结构没有物理限制。旨在增加焦点数量并使其他点的相位误差最小化的优化镜头的过程,产生了具有2至5个焦点的镜头设计。本文回顾了其中一些设计。

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