A Novel Frequency Selective Antenna for mm-Wave Phased Arrays

H. S. Farahani, B. Rezaee, H. Paulitsch, W. Bösch
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Abstract

In this paper, we present a novel frequency selective antenna based on the distributed coupled-resonator (DCR) feeding network. The main idea is to design a high performance, compact and cost-effective antenna module with filtering functionality for mm-Wave phased arrays. The DCR structure with a simple and low-profile stack-up fabrication is effectively adopted to achieve a compact modular fourth-degree filtering antenna (Filtenna) with a steep roll-off rejection and directive radiation pattern. For demonstration, a 2×2 array of the Filtenna is separately designed and fabricated with the aim of phased array antenna fed by a Quad-channel beamformer. The experimental results of the Filtenna are well-agreed with the simulations demonstrating return-loss and realized-gain of 15 dB and 8 dBi, respectively. The proposed Filtenna array is operating at 31 GHz with bandwidth of 2 GHz (15 dB return loss) and in-phase directivity of 15.6 dBi. The proposed antenna is scalable to large arrays suitable for high gain applications like automotive radar, SATCOM and 5G.
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一种新型毫米波相控阵选频天线
本文提出了一种基于分布式耦合谐振器馈电网络的新型选频天线。主要思想是为毫米波相控阵设计一个具有滤波功能的高性能,紧凑和经济高效的天线模块。采用简单、低轮廓的DCR结构,有效地实现了具有陡峭滚转抑制和定向辐射方向图的紧凑模块化四度滤波天线(Filtenna)。为了进行演示,分别设计和制作了滤波器的2×2阵列,以四通道波束形成器馈电相控阵天线为目标。该滤波器的实验结果与仿真结果吻合良好,回波损耗和实现增益分别为15 dB和8 dBi。该滤波器阵列工作频率为31 GHz,带宽为2 GHz (15 dB回波损耗),同相指向性为15.6 dBi。该天线可扩展到大型阵列,适用于汽车雷达、卫星通信和5G等高增益应用。
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