论文标题

具有MIMO多样性的超宽带天线5G无线通信

Ultra-Wideband Antenna with MIMO Diversity for 5G Wireless Communication

论文作者

Khan, M. Saeed, Iftikhar, Adnan, Shubair, Raed M., Capobianco, Antonio-D., Braaten, Benjamin D., Anagnostou, Dimitris E.

论文摘要

一个八个元素,紧凑的超宽带 - 多个输入多重输出(UWB-MIMO)天线,能够为未来的第五代(5G)终端设备提供高数据速率,并为第三代(3G)和第四代(4G)提供必要的带宽,从而通过将4.85 GHZ置于4.85 GHZ到3.35 GHZ的沟通来置于ISPORTION,从而将其置于4.85 GHZ的情况下。合并后的存根还提供了拒绝任何选定的频段以及带宽控制的灵活性。印刷单极的正交放置允许极化多样性,并提供高分离。在提出的八个元素UWB-MIMO/多样性天线中,单子对3-4是180o镜像的单极对1-2的转换,它位于平面50 x 50 mm2底物的相对角上。然后将四个额外的单极垂直放在同一板上,导致总尺寸仅为50 x 50 x 25 mm3。通过比较制造原型的测量值来验证模拟结果。得出的结论是,该设计在整个带宽2至12 GHz中符合目标规范,反射系数比-10 dB(拒绝的频带除外),隔离超过17 dB,低封底矛盾,低增益变化,稳定的辐射模式以及在无线本地网络(WLAN)频段中对信号的强烈拒绝。总体而言,提议的八个元素体系结构的复杂性和降低的复杂性增强了其对未来5G终端设备多样性应用的实际生存能力,以及文献中存在的其他MIMO天线设计。

An eight element, compact Ultra Wideband-Multiple Input Multiple Output (UWB-MIMO) antenna capable of providing high data rates for future Fifth Generation (5G) terminal equipments along with the provision of necessary bandwidth for Third Generation (3G) and Fourth Generation (4G) communications that accomplishes band rejection from 4.85 to 6.35 GHz by deploying a Inductor Capacitor (LC) stub on the ground plane is presented. The incorporated stub also provides flexibility to reject any selected band as well as bandwidth control. The orthogonal placement of the printed monopoles permits polarization diversity and provides high isolation. In the proposed eight element UWB-MIMO/diversity antenna, monopole pair 3-4 are 180o mirrored transform of monopole pair 1-2 which lie on the opposite corners of a planar 50 x 50 mm2 substrate. Four additional monopoles are then placed perpendicularly to the same board leading to a total size of 50 x 50 x 25 mm3 only. The simulated results are validated by comparing the measurements of a fabricated prototype. It was concluded that the design meets the target specifications over the entire bandwidth of 2 to 12 GHz with a reflection coefficient better than -10 dB (except the rejected band), isolation more than 17 dB, low envelope correlation, low gain variation, stable radiation pattern, and strong rejection of the signals in the Wireless Local Area Network (WLAN) band. Overall, compact and reduced complexity of the proposed eight element architecture, strengthens its practical viability for the diversity applications in future 5G terminal equipments amongst other MIMO antennas designs present in the literature.

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