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A 60 GHz Horizontally Polarized Magnetoelectric Dipole Antenna Array With 2-D Multibeam Endfire Radiation

机译:具有二维多波束端射辐射的60 GHz水平极化磁电偶极子天线阵列

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摘要

A novel substrate integrated waveguide (SIW) fed horizontally polarized endfire magnetoelectric (ME) dipole antenna composed of an open-ended SIW with broad walls vertical to substrates and a pair of electric dipoles realized by four metallic patches is proposed. Simple configuration and excellent performance including an impedance bandwidth of 46.5%, stable gain of around 6 dBi, and symmetrical cardioid radiation patterns with low backward radiation and low cross polarizations are achieved. An SIW 90° twist integrated in three-layered substrate is implemented in order to connect the ME-dipole antenna conveniently to the SIW beam-forming network with broad walls parallel to substrates. A 4 × 4 SIW Butler matrix with a three-layered zigzag topology is then designed, which enables a size reduction of 45% for the matrix compared with conventional single-layered configuration but not affecting its operating characteristics. By employing a 2 × 4 ME-dipole array with 90° twists, two-folded Butler matrices and four SIW 3 dB E-plane couplers, a multibeam endfire array that can radiate eight beams scanning in two dimensions is designed at the 60 GHz band. The fabricated prototype verifies that a wide impedance bandwidth of 22.1%, gain varying from 10 to 13 dBi and stable radiation beams can be obtained. Due to good performance and the compact structure with low fabrication costs, the proposed design would be attractive for future millimeter-wave wireless applications including 5G communications and the WiGig system.
机译:提出了一种新型的基片集成波导(SIW)馈电的水平极化端射磁电(ME)偶极天线,该天线由具有垂直于基片的宽壁的开放式SIW和由四个金属贴片实现的一对电偶极组成。实现了简单的配置和出色的性能,包括46.5%的阻抗带宽,大约6 dBi的稳定增益以及具有低后向辐射和低交叉极化的对称心形辐射图。为了将ME偶极子天线方便地连接到SIW波束形成网络,且宽壁平行于衬底,将SIW 90°扭曲集成在三层基板中。然后设计了具有三层之字形拓扑结构的4×4 SIW巴特勒矩阵,与传统的单层配置相比,该矩阵的尺寸可减小45%,但不影响其工作特性。通过使用具有90°扭曲的2×4 ME偶极子阵列,两倍的Butler矩阵和四个SIW 3 dB E平面耦合器,在60 GHz频段设计了一个多光束端射阵列,该阵列可以辐射二维扫描的八束光束。 。所制造的原型证明,可以获得22.1%的宽阻抗带宽,10到13 dBi的增益变化以及稳定的辐射束。由于良好的性能和紧凑的结构以及较低的制造成本,因此所提出的设计对于包括5G通信和WiGig系统在内的未来毫米波无线应用将具有吸引力。

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