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Millimeter-Wave Liquid Crystal Polymer Based Conformal Antenna Array for 5G Applications

机译:适用于5G应用的基于毫米波液晶聚合物的共形天线阵列

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This letter presents the design, fabrication, and performance evaluation of a flexible millimeter-wave (mm-wave) antenna array for the fifth generation (5G) wireless networks operating at K-a-band (26.5-40 GHz). The single element antenna is comprised of a coplanar-waveguide-fed rectangular patch tapered at its sides with two vertically oriented slots. The ground is designed with L-shaped stubs to converge the dispersed radiation pattern for improving the directivity and gain. The antenna fabrication is accomplished by two advanced methods of laser-milling and inkjet printing on a thin film of flexible liquid crystal polymer. A novel and time-efficient method for postprinting sintering is also proposed in this letter. The design is extended in a two-element array for the gain enhancement. Measurements have validated that the proposed antenna array exhibits a bandwidth of 26-40 GHz with a peak gain of 11.35 dBi at 35 GHz, and consistent high gain profile of above 9 dBi in the complete Ka-band. These features recommend the proposed antenna array as an efficient solution for integration in future flexible 5G front ends and mm-wave wearable devices.
机译:这封信介绍了在K频带(26.5-40 GHz)下运行的第五代(5G)无线网络的柔性毫米波(mm-wave)天线阵列的设计,制造和性能评估。单元件天线由共面波导馈送的矩形贴片组成,该贴片在其侧面逐渐变细,并带有两个垂直方向的缝隙。地面设计有L形短截线,以收敛分散的辐射方向图,从而改善方向性和增益。天线的制造是通过在柔性液晶聚合物薄膜上进行激光研磨和喷墨打印的两种先进方法完成的。在这封信中还提出了一种新颖且省时的烧结后烧结方法。该设计扩展为两元素阵列,以增强增益。测量结果已经证实,所提出的天线阵列具有26-40 GHz的带宽,在35 GHz时的峰值增益为11.35 dBi,并且在整个Ka频段中的一致高增益分布在9 dBi以上。这些功能将建议的天线阵列推荐为一种有效的解决方案,可以集成到未来的灵活5G前端和毫米波可穿戴设备中。

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