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Design and Fabrication of a High-Gain 60-GHz Cavity-Backed Slot Antenna Array Fed by Inverted Microstrip Gap Waveguide

机译:倒置微带隙波导馈电的高增益60 GHz腔后向缝隙天线阵列的设计与制作

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This communication deals with the design of a 16×16 slot array antenna fed by inverted microstrip gap waveguide (IMGW). The whole structure designed in this communication consists of radiating slots, a groove gap cavity layer, a distribution feeding network, and a transition from standard WR-15 waveguide to the IMGW. First, a 2×2 cavity-backed slot subarray is designed with periodic boundary condition to achieve good performances of radiation pattern and directivity. Then, a complete IMGW feeding network with a transition from WR-15 rectangular waveguide to the IMGW has been realized to excite the radiating slots. The complete antenna array is designed at 60-GHz frequency band and fabricated using Electrical Discharging Machining Technology. The measurements show that the antenna has a 16.95% bandwidth covering 54–64-GHz frequency range. The measured gain of the antenna is more than 28 dBi with the efficiency higher than 40% covering 54–64-GHz frequency range.
机译:该通信涉及由反向微带隙波导(IMGW)馈电的16×16缝隙阵列天线的设计。此通信中设计的整个结构包括辐射槽,凹槽间隙腔层,分布馈送网络以及从标准WR-15波导到IMGW的过渡。首先,设计了具有周期边界条件的2×2腔背隙缝隙子阵列,以实现良好的辐射方向图和方向性性能。然后,已经实现了具有从WR-15矩形波导过渡到IMGW的完整IMGW馈电网络,以激发辐射槽。完整的天线阵列设计在60 GHz频段,并使用电火花加工技术制造。测量结果表明,该天线具有16.95%的带宽,覆盖54-64 GHz频率范围。测得的天线增益大于28 dBi,在54-64 GHz频率范围内,效率高于40%。

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