140 GHz Additive Manufacturing Low-Cost and High-Gain Fabry-Perot Resonator Antenna

R. Xu, S. Gao, B. S. Izquierdo, Chao Gu, P. Reynaert, Alexander Standaert, G. Gibbons, I. Dmitry, W. Bösch, M. Gadringer
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引用次数: 6

Abstract

This paper presents a novel low-cost and high-gain fabry-perot resonator antenna (FPRA) at 140.0 GHz with additive manufacturing (AM) technology. A simple $2\times 2$ waveguide slot array is adopted as the feed antenna in this design. A layer of partially reflective surface (PRS), which is composed by two layers of metal grids and exhibits a positive reflection phase gradient over frequency, is placed above the feed antenna to improve the directivity radiation. To validate this design and meet the low-cost requirements, this antenna is printed by AM technique. Compared to previous high gain antennas, our design has the advantage of simple structure and low-cost because of applying fewer feeding networks and adopting 3-D printing technology.
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140 GHz增材制造低成本高增益法布里-珀罗谐振器天线
利用增材制造技术,提出了一种140.0 GHz低成本高增益的新型法布里-珀罗谐振器天线(FPRA)。本设计采用简单的$2\ × 2$波导槽阵作为馈源天线。在馈电天线上方放置一层由两层金属栅格组成的部分反射面(PRS),其反射相位随频率呈正梯度,以改善馈电天线的指向性辐射。为了验证该设计并满足低成本的要求,采用AM技术打印该天线。与以往的高增益天线相比,我们的设计采用了更少的馈电网络和3d打印技术,具有结构简单、成本低的优点。
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