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Beam-Steering SIW Leaky-Wave Subarray With Flat-Topped Footprint for 5G Applications

机译:适用于5G应用的波束导向型SIW漏波子阵列,具有扁平式封装

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A novel double-layered vertically stacked substrate integrated waveguide leaky-wave antenna (SIW LWA) is presented. An array of vias on the narrow wall produces leakage through excitation of TE10 fast-wave mode of the waveguide. Attenuation and phase constants of the leaky mode are controlled independently to obtain desired pattern in the elevation. In the azimuth, top and bottom layers radiate independently, producing symmetrically located beams on both sides of broadside. A new near-field analysis of single LWA is performed to determine wavenumbers and as a way to anticipate radiation characteristics of the dual layer antenna. In addition to frequency beam steering in the elevation plane, this novel topology also offers flexibility for multispot illumination of the azimuth plane with flat-topped beams at every φ -cut through excitation of each layer separately or both antennas simultaneously. It is shown that the proposed antenna solution is a qualified candidate for 5G base station antenna (BSA) applications due to its capability of interference mitigation and latency reduction. Moreover, from the point of view of highly reliable connectivity, users can enjoy seamless mobility through the provided spatial diversity. A 15-GHz prototype has been fabricated and tested. Measured results are in good agreement with those of simulations.
机译:提出了一种新型的双层垂直堆叠的基片集成波导漏波天线(SIW LWA)。窄壁上的通孔阵列通过激发波导的TE10快速波模式产生泄漏。泄漏模式的衰减和相位常数可独立控制,以获得所需的高程图样。在方位角中,顶层和底层独立地辐射,从而在宽边的两侧产生对称定位的光束。对单个LWA进行了新的近场分析,以确定波数,并以此作为预测双层天线辐射特性的方式。除了在仰角平面上进行波束控制外,这种新颖的拓扑还为通过分别激励每一层或同时激励两个天线在每个φ切平面上平顶波束对方位平面进行多点照明提供了灵活性。结果表明,由于其缓解干扰和减少等待时间的能力,所提出的天线解决方案是5G基站天线(BSA)应用的合格候选者。此外,从高度可靠的连接性的角度来看,用户可以通过提供的空间多样性享受无缝移动性。已经制造并测试了15 GHz原型。测量结果与模拟结果吻合良好。

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