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3D Printed 60-GHz High-Gain Horn Antenna Arrays with 40 Bandwidth

机译:3D印刷60-GHz高增益喇叭天线阵列,带宽40%

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Bandwidth enhancement of the millimeter-wave high-gain antenna arrays with air-filled waveguide feed networks is investigated in this paper. A novel wideband full-corporate feed network topology composed of X-shaped power dividers arranged in multi-layers is proposed. By combining the feed network with the wideband waveguide-feed horn antenna elements, two arrays with sizes of $8imes 8$ and $16imes 16$ are implemented in the V-band. With the help of the commercial metallic three-dimensional (3D) printing technology, the array geometries can be realized conveniently in a whole piece. Excellent operating performance, including a wide impedance bandwidth of 43% for $|mathrm{s}_{11|}< -10dB$, a gain of up to 33.9 dBi, and stable and symmetrical radiation patterns are obtained by the $16imes 16$ array. This work offers a new means to enhance the bandwidth of the millimeter-wave antenna array with a large size to more than 40% and proves the feasibility of the metallic 3D printing in 60-GHz antenna array design as well. Benefitted from good performance and ease of realization, the arrays would be a good candidate for future applications in millimeterwave wideband communication systems.
机译:本文研究了带充气波导馈电网的毫米波高增益天线阵列的带宽增强。提出了由布置在多层的X形功率分流器组成的新型宽带全企业馈送网络拓扑。通过将馈电网与宽带波导 - 馈送喇叭天线元件组合,在V波段中实现了两个尺寸为8美元的尺寸的两个阵列。借助商业金属三维(3D)印刷技术,可以在整个件中方便地实现阵列几何形状。优异的操作性能,包括$ | mathrm {s} _ {11 |} _ {11 |} <-10db $,高达33.9 dbi的宽度带宽,且稳定和对称辐射模式的增益由$ 16 时代16 $阵列。这项工作提供了一种新的方法,可以提高毫米波天线阵列的带宽,大尺寸为40%以上,并证明了在60-GHz天线阵列设计中金属3D打印的可行性。受益于良好的性能和易于实现,阵列将成为毫米宽带通信系统中未来应用的良好候选者。

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