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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Design and Fabrication of a High-Gain 60-GHz Corrugated Slot Antenna Array With Ridge Gap Waveguide Distribution Layer
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Design and Fabrication of a High-Gain 60-GHz Corrugated Slot Antenna Array With Ridge Gap Waveguide Distribution Layer

机译:具有脊隙波导分布层的高增益60GHz波纹槽形天线阵列的设计与制作

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摘要

A wideband high-gain high-efficiency $16 times 16$ -element slot antenna array is presented for 60-GHz band applications. The antenna is designed based on gap waveguide technology. The most important advantage of using this technology is its ability to decrease complexity and cost of fabrication because there is no requirement of electrical contact between the three layers of the antenna structure. The three layers are a corrugated metal plate with radiating slots, a subarray cavity layer, and a ridge gap waveguide (RGW) feed network layer. The corporate feed network is realized by a texture of pins and guiding ridges in a metal plate. Also, in order to excite the antenna with a standard V-band rectangular waveguide, a transition from RGW to WR-15 is designed. The radiating elements, corrugations, cavity layer, power dividers, and transition are designed and optimized to suppress the reflection coefficient at the input WR-15 port over the desired frequency range from 57 to 66 GHz. Finally, the $16 times 16$ -element slot antenna array is fabricated by the standard milling technology. The measured results demonstrate about 16% of reflection coefficient bandwidth ( $vert S_{11}vert <-10$ dB) covering the 56–65.7-GHz frequency range, and the measured gain is larger than 32.5 dBi over the band with more than 70% antenna efficiency.
机译:提出了一种适用于60 GHz频段应用的宽带高增益高效16倍元素16缝隙天线阵列。该天线是基于间隙波导技术设计的。使用该技术的最重要优点是其降低复杂性和制造成本的能力,因为在天线结构的三层之间不需要电接触。这三层是具有辐射槽的波纹金属板,子阵列腔层和脊隙波导(RGW)馈送网络层。企业馈送网络是通过金属板上的销钉和导向脊的纹理实现的。另外,为了用标准的V形矩形波导激励天线,设计了从RGW到WR-15的过渡。设计和优化了辐射元件,波纹,空腔层,功率分配器和过渡,以抑制57至66 GHz所需频率范围内输入WR-15端口的反射系数。最后,采用标准铣削技术制造了16倍16元素的缝隙天线阵列。测量结果表明,覆盖56–65.7-GHz频率范围的反射系数带宽大约为16%($ vert S_ {11} vert <-10 $ dB),在整个频带上,测量增益大于32.5 dBi。天线效率达到70%。

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