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Multi-Ray Channel Modeling and Wideband Characterization for Wireless Communications in the Terahertz Band

机译:太赫兹频段无线通信的多射线信道建模和宽带表征

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摘要

Terahertz (0.06–10 THz) Band communication is envisioned as a key technology for satisfying the increasing demand for ultra-high-speed wireless links. In this paper, first, a unified multi-ray channel model in the THz Band is developed based on ray tracing techniques, which incorporates the propagation models for the line-of-sight, reflected, scattered, and diffracted paths. The developed theoretical model is validated with the experimental measurements (0.06–1 THz) from the literature. Then, using the developed propagation models, an in-depth analysis on the THz channel characteristics is carried out. In particular, the distance-varying and frequency-selective nature of the Terahertz channel is analyzed. Moreover, the coherence bandwidth and the significance of the delay spread are studied. Furthermore, the wideband channel capacity using flat and water-filling power allocation strategies is characterized. Additionally, the temporal broadening effects of the Terahertz channel are studied. Finally, distance-adaptive and multi-carrier transmissions are suggested to best benefit from the unique relationship between distance and bandwidth. The provided analysis lays out the foundation for reliable and efficient ultra-high-speed wireless communications in the (0.06–10) THz Band.
机译:太赫兹(0.06–10 THz)频段通信被视为满足对超高速无线链路不断增长的需求的关键技术。在本文中,首先,基于光线跟踪技术,开发了在THz波段中的统一多射线信道模型,该模型结合了视线,反射,散射和衍射路径的传播模型。文献中的实验测量值(0.06-1 THz)验证了开发的理论模型。然后,使用开发的传播模型,对太赫兹信道特性进行了深入分析。特别地,分析了太赫兹信道的距离变化和频率选择特性。此外,研究了相干带宽和时延扩展的重要性。此外,表征了使用平坦和注水功率分配策略的宽带信道容量。另外,研究了太赫兹信道的时间扩展效应。最后,建议距离自适应和多载波传输最好地受益于距离和带宽之间的独特关系。所提供的分析为(0.06–10)THz频带中可靠,高效的超高速无线通信奠定了基础。

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