4D-BiTK:动态6G应用的波束移位Yagi-Uda天线设计

IF 0.9 Q4 TELECOMMUNICATIONS
Vijayakumar Rajarathinam, Shakeel Ahmed, Sandeep Prabhu, C. R. Rathish, S. Gobhinath
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引用次数: 0

摘要

随着6G无线通信的快速发展,对创新的天线设计提出了新的需求,同时对高速、低延迟和节能的连接提出了同样的要求。传统的天线无法满足这些需求,因为它们只能提供有限数量的规定波束导向,数据速率相对较低,并且受到明显的干扰。我们开发了一种4D-BiTK: BeamShift Yagi-Uda天线来解决这些困难,提供了一种模式可重构的天线解决方案,在太赫兹频率下使用石墨烯技术具有卓越的灵活性。该天线采用了石墨烯-金属混合结构,实现了波束方向、前后比和谐振频率的实时优化。此外,我们还包括一个带有双峰Kookaburra优化算法的分叉时间卷积网络,以进一步增强波束导向和模式可重构性。4D-BiTK: BeamShift天线具有85%的辐射效率,89%的10db阻抗带宽,16db FEB比和12.5 dB的峰值增益。因此,这些值透明地展示了其在未来6G网络适用性方面的能力,例如波束转向精度、能源效率和整体信号质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
4D-BiTK: Beam Shifting Yagi–Uda Antenna Design for Dynamic 6G Applications

With the rapid progress of 6G wireless communication, there is a new need for innovative antenna designs with the same set of demands about high-speed, low-latency, and energy-efficient connectivity. Traditional antennas fail to meet these demands by providing a limited number of prescribed beam-steering directions, having relatively low data rates, and suffering from significant interference. We developed a 4D-BiTK: BeamShift Yagi–Uda antenna to resolve these difficulties, offering a pattern reconfigurable antenna solution with exceptional flexibility using graphene technology at terahertz frequencies. The hybrid graphene-metal structure of the antenna is incorporated, which leads to real-time optimization of the direction of the beam, front-to-back (FEB) ratio, and the resonance frequency. In addition, we include a Bifurcated Temporal Convolutional Network with a Bimodal Kookaburra Optimization algorithm for further enhancing beam steering and pattern reconfigurability. The 4D-BiTK: BeamShift antenna has an 85% radiation efficiency, a 10-dB impedance bandwidth of 89%, a 16-dB FEB ratio, and a peak gain of 12.5 dB. Thus, these values transparently present its capability in terms of suitability for future 6G networks, such precision in beam steering, energy efficiency, and overall signal quality.

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