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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Millimeter-Wave Beam-Steering Antenna Using a Fluidically Reconfigurable Lens
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Millimeter-Wave Beam-Steering Antenna Using a Fluidically Reconfigurable Lens

机译:使用流体可重新配置镜头的毫米波光束转向天线

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摘要

A fluidically reconfigurable millimeter-wave (mm-wave)-lensed antenna is reported that covers the band from 32 to 35 GHz. The antenna is a modified antipodal Vivaldi antenna element with a fluidically loaded dielectric lens to facilitate single-element beam-steering. The fluid used in this work is ethyl acetate (C4H8O2) with epsilon(r) = 5.0 + j1.3, tan delta = 0.26 at 33.5 GHz. The antenna element and lens are manufactured using a substrate with epsilon(r) = 3.55 and tan delta = 0.0027. Experimental results show that the antenna can produce up to 25 degrees of beam-steering at 32 GHz and up to 20 degrees of beam-steering at 35 GHz. The maximum realized gain of the antenna is 8.6 dBi and the minimum realized gain is 5.6 dBi over the band.
机译:报告了流体可重构的毫米波(MM波) - 掺型天线,其覆盖32至35GHz的带。天线是具有流体装载的介电透镜的改进的抗双向VivalDi天线元件,以便于单元素束转向。在该工作中使用的流体是乙酸乙酯(C4H8O2),ε(R)= 5.0 + J1.3,TANδ在33.5GHz下= 0.26。天线元件和透镜使用具有epsilon(R)= 3.55和Tan Delta = 0.0027的基材制造。实验结果表明,天线在32GHz处产生高达25度的光束转向,高达20度的35 GHz。天线的最大实现增益为8.6 dbi,并且在频带上最小的实现增益为5.6 dbi。

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