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Printed$W$-Band Multibeam Antenna With Luneburg Lens-Based Beamforming Network

机译:印刷的 $ W $ 带基于Luneburg透镜的波束形成网络的多波束天线

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摘要

A simple and low-cost single substrate layer Luneburg lens-based beamforming network (BFN) operating in W-band is proposed. A multibeam antenna is then realized using the novel BFN and fabricated using a low-cost printed circuit board process. The Luneburg lens is realized by drilling holes in a substrate, and to extend the refractive index variation, a high dielectric constant substrate is embedded at the lens center. The lens is excited by radially placed open-ended substrate integrated waveguides (SIWs) at the lens circumference, feeding a subset of antenna ports placed on the opposite side of the lens. The proposed BFN thus provides half-power beamwidth (HPBW) and beam steering angle flexibility for multibeam antennas. An antenna generating seven beams was prototyped at 79.5 GHz to validate this BFN, providing measured beam steering of approximately ±41° with a broadside HPBW of 10°. The bandwidth of the proposed BFN is determined by the single-mode operation of the SIW. The fabricated multibeam antenna impedance bandwidth is, however, about 2% at 79.5 GHz because of the radiating elements. The radiating elements are series fed slot arrays placed on SIWs.
机译:提出了一种简单且低成本的在W波段工作的基于Luneburg透镜的单衬底层波束形成网络(BFN)。然后,使用新型BFN实现多波束天线,并使用低成本印刷电路板工艺制造多波束天线。 Luneburg透镜是通过在基板上钻孔来实现的,并且为了扩展折射率变化,在透镜中心嵌入了高介电常数的基板。透镜通过在透镜圆周处径向放置的开放式衬底集成波导(SIW)激发,向位于透镜相对侧的一部分天线端口馈电。因此,提出的BFN为多波束天线提供了半功率波束宽度(HPBW)和波束转向角灵活性。可以在79.5 GHz上对产生7个波束的天线进行原型验证,以验证该BFN,并提供约±41°的实测波束转向和10°的宽边HPBW。提议的BFN的带宽由SIW的单模操作确定。然而,由于辐射元件的缘故,在79.5 GHz时,制造的多波束天线阻抗带宽约为2%。辐射元件是放置在SIW上的串联馈电插槽阵列。

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