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Sub-THz Dipole Antenna for Future 5G Wireless Communication

机译:子句偶极天线用于未来的5G无线通信

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Extremely high frequency means extremely fast communication especially if the bands are operating in the millimeter wave or sub-Terahertz (THz) range. 5G communication in the sub-THz links will play a major role in high data rate wireless communication over a distance of few meters. Achieving this task will require high gain and wideband antennas. In this contribution, we present such an antenna design that meets the aforementioned criteria. Firstly around the center sub-THz frequency of 300 GHz, a single dipole antenna element is designed that is backed by a reflector for high gain operation. The conducting materials used is based on Gold offering high conductivity. That antenna achieves a wide impedance bandwidth of 38.6% from 294 GHz to 410 GHz with a gain of 5.14 dBi. Secondly, based on the same dipole structure, optimal directors are introduced to increase the gain while maintaining almost the same bandwidth. The gain achieved is 8.01 dBi. The results accomplished makes the proposed designs viable candidates for high speed and short distance 5G wireless communication systems.
机译:极高的频率意味着特别快的通信,特别是如果带在毫米波或亚太极(Thz)范围内运行。 5G在子THz链路中的通信将在几米距离的高数据速率无线通信中发挥重要作用。实现此任务将需要高增益和宽带天线。在这一贡献中,我们介绍了满足上述标准的这种天线设计。首先,在300 GHz的中心子THz频率周围,设计了一个偶极天线元件,由反射器压回用于高增益操作的反射器。所用的导电材料基于提供高导电性的金。该天线从294GHz到410GHz实现38.6%的宽阻抗带宽,增益为5.14 dBi。其次,基于相同的偶极结构,引入最佳导向器以增加增益,同时保持几乎相同的带宽。所取得的增益是8.01 dbi。完成的结果使提议为高速和短距离5G无线通信系统设计可行的候选人。

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