首页> 外文期刊>IEEE Transactions on Vehicular Technology >Broadband and Wide-Angle Scanning Capability in Low-Coupled mm-Wave Phased-Arrays Incorporating ILA With HIS Fabricated on FR-4 PCB
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Broadband and Wide-Angle Scanning Capability in Low-Coupled mm-Wave Phased-Arrays Incorporating ILA With HIS Fabricated on FR-4 PCB

机译:在低耦合的MM波相位阵列中的宽带和广角扫描能力,其在FR-4 PCB上的制造中使用ILA

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摘要

This paper presents a compact millimeter-wave (mm-Wave) phased array incorporating inverted-L antenna (ILA) with high-impedance electromagnetic surfaces (HIS) based on single-layer FR-4 PCB for user equipment (UE). In order to realize mm-Wave UE in low production cost, the design methodology of phased array antenna in single-layer FR-4 PCB is proposed without any additional packaging process. The presented antenna consists of low-coupled antenna element and low loss feeding networks in compressed linear array configuration with 0.39 lambda(0) inter-element spacing. First, in order to realize broadband characteristics, the ILA is integrated with one-dimensional electromagnetic bandgap (1-D EBG) structures featuring HIS via slow-wave behavior. Due to high-impedance properties of the embedded via wall structures in common ground plane between each antenna element, the mutual coupling path through surface-current can be reduced. Second, in order to minimize leakage power caused by surface-waves, low loss coplanar waveguide ground (CPWG) feeding networks with via wall structures and island-shape pads are realized. The fabricated 4-elements and 8-elements phased array antennas including antenna element and feeding network based on FR-4 PCB achieve wide 3 dB beam coverage while featuring low beam squint in the Ka-band. In order to investigate over-the-air (OTA) system performance at three beam steering scenarios (boresight and +/- 60 degrees scan angle), the measured maximum error vector magnitude (EVM) in QPSK modulation scheme is 16.6%. The coverage efficiency beyond 50% for the realized gain of -1.5 dBi from 26 to 36 GHz is demonstrated.
机译:本文介绍了一种紧凑型毫米波(MM波)相控阵列,其具有基于单层FR-4 PCB的高阻抗电磁表面(HIS)的倒置-L天线(ILA),用于用户设备(UE)。为了以低生产成本实现MM波UE,提出了单层FR-4 PCB中相控阵天线的设计方法,而无需任何额外的包装工艺。所呈现的天线包括低耦合天线元件和以压缩线性阵列配置的低损耗馈电网,具有0.39λ(0)元元间距。首先,为了实现宽带特性,ILA集成与具有慢波行为的一维电磁带隙(1-D EBG)结构。由于每个天线元件之间的公共接地平面中的嵌入式通孔壁结构的高阻抗特性,可以减小通过表面电流的互联耦合路径。其次,为了最小化由表面波引起的泄漏功率,实现了通过壁结构和岛状焊盘的低损耗共面波导地面(CPWG)馈送网络。制造的4个元件和8元件相控阵天线包括基于FR-4 PCB的天线元件和馈电网实现宽的3dB波束覆盖,同时在KA波段中具有低光束斜视。为了调查三个波束转向场景的空气(OTA)系统性能(BIRCERIGHT和+/- 60度扫描角),QPSK调制方案中测量的最大误差矢量幅度(EVM)为16.6%。证明了26至36 GHz的实现增益超过50%的覆盖率效率。

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