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Beam shaping and gain enhancement using a diffractive optical element (DOE) lens

机译:使用衍射光学元件(DOE)透镜的光束成形和增益增强

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Dielectric and metamaterial lenses have been designed for gain enhancement and beam shaping. The present work focuses on the design of a diffractive optical element (DOE) lens for the same purpose, the advantage being that it is much thinner lighter and easy to fabricate. Gain enhancement is illustrated by modeling the DOE lens in CST microwave studio and placing it in front of different antennas. The antennas consist of a horn, slotted waveguide, and microstrip patch array. Beam shaping and focusing is clearly illustrated. It is seen that the size of the lens is proportional to gain increase which can be as high as 18dB enhancement for a 45-GHz horn antenna. The lens, which is made from rexolite, can be easily fabricated and experimental validation of simulated results is under progress.
机译:介电和超材料透镜已经设计用于增益增强和光束整形。为了相同的目的,目前的工作集中在衍射光学元件(DOE)透镜的设计上,其优点是它更薄,更轻且易于制造。通过在CST微波工作室对DOE透镜进行建模并将其放置在不同天线的前面,可以说明增益的提高。天线由喇叭,开槽波导和微带贴片阵列组成。光束整形和聚焦清晰可见。可以看出,透镜的尺寸与增益的增加成正比,对于45 GHz的号角天线,增益的增加可以高达18dB。该镜片是由白蜡石制成的,可以很容易地制造,并且正在对模拟结果进行实验验证。

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