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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Three-Dimensional Architecture of Substrate Integrated Waveguide Feeder for Fermi Tapered Slot Antenna Array Applications
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Three-Dimensional Architecture of Substrate Integrated Waveguide Feeder for Fermi Tapered Slot Antenna Array Applications

机译:费米锥形槽天线阵列应用的基片集成波导馈线的三维结构

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A class of three-dimensional planar arrays in substrate integrated waveguide (SIW) technology is proposed, designed and demonstrated with 8 $times$ 16 elements at 35 GHz for millimeter-wave imaging radar system applications. Endfire element is generally chosen to ensure initial high gain and broadband characteristics for the array. Fermi-TSA (tapered slot antenna) structure is used as element to reduce the beamwidth. Corrugation is introduced to reduce the resulting antenna physical width without degradation of performance. The achieved measured gain in our demonstration is about 18.4 dBi. A taper shaped air gap in the center is created to reduce the coupling between two adjacent elements. An SIW H-to-E-plane vertical interconnect is proposed in this three-dimensional architecture and optimized to connect eight 1 $times$ 16 planar array sheets to the 1 $times$ 8 final network. The overall architecture is exclusively fabricated by the conventional PCB process. Thus, the developed SIW feeder leads to a significant reduction in both weight and cost, compared to the metallic waveguide-based counterpart. A complete antenna structure is designed and fabricated. The planar array ensures a gain of 27 dBi with low SLL of 26 dB and beamwidth as narrow as 5.15 degrees in the E-plane and 6.20 degrees in the 45$^{circ}$-plane.
机译:提出,设计和演示了衬底集成波导(SIW)技术中的一类三维平面阵列,它在35 GHz频率下具有8 x 16的元素,用于毫米波成像雷达系统应用。通常选择Endfire元件以确保阵列的初始高增益和宽带特性。 Fermi-TSA(锥形缝隙天线)结构用作减小波束宽度的元件。引入波纹以减小最终的天线物理宽度而不会降低性能。在我们的演示中,达到的实测增益约为18.4 dBi。在中心形成锥形的气隙,以减少两个相邻元件之间的耦合。在这种三维体系结构中提出了一种SIW H到E平面的垂直互连,并进行了优化,可将8个1 x 16的平面阵列片连接到1 x 8的最终网络。整体架构仅通过常规PCB工艺制造。因此,与基于金属波导的同类产品相比,发达的SIW馈线可显着降低重量和成本。设计并制造了完整的天线结构。平面阵列可确保27 dBi的增益,低SLL为26 dB,并且波束宽度在E平面中窄至5.15度,在45°平面中窄至6.20度。

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