论文标题
可重新配置的智能表面辅助THZ通信的性能和优化
Performance and Optimization of Reconfigurable Intelligent Surface Aided THz Communications
论文作者
论文摘要
Terahertz(THZ)通信可以通过大量带宽满足高数据速率需求。但是,严重的路径衰减和硬件缺陷会大大减轻其性能。因此,我们利用可重新配置的智能表面(RIS)技术,并研究了RIS AID的THZ通信。我们首先证明,基于在各种不同情况下进行的两个THZ信号测量实验的波动两射线分布,可以通过波动的两射线分布来准确地建模THZ信号的小幅度振幅褪色。为了优化RIS元素的相移,我们提出了一种基于群体智能的新方法,不需要完整的通道估计。然后,我们得出端到端信号到噪声加上失真比(SNDR)和信噪比(SNR)的精确统计特征。此外,我们提出渐近分析,以获得更多的见解,当SNDR或RIS元素数量较高时。最后,我们为中断概率和阵尾能力提供了分析表达式。获得了理想和非理想射频链的千古能力的紧密上限。有趣的是,增加RIS元素的数量可以显着提高THZ通信系统的性能。例如,当元素数量从40增加到80时,千古能力最多可以增加25%,这仅会使系统的成本微不足道。
TeraHertz (THz) communications can satisfy the high data rate demand with massive bandwidth. However, severe path attenuation and hardware imperfection greatly alleviate its performance. Therefore, we utilize the reconfigurable intelligent surface (RIS) technology and investigate the RIS-aided THz communications. We first prove that the small-scale amplitude fading of THz signals can be accurately modeled by the fluctuating two-ray distribution based on two THz signal measurement experiments conducted in a variety of different scenarios. To optimize the phase-shifts at the RIS elements, we propose a novel swarm intelligence-based method that does not require full channel estimation. We then derive exact statistical characterizations of end-to-end signal-to-noise plus distortion ratio (SNDR) and signal-to-noise ratio (SNR). Moreover, we present asymptotic analysis to obtain more insights when the SNDR or the number of RIS's elements is high. Finally, we derive analytical expressions for the outage probability and ergodic capacity. The tight upper bounds of ergodic capacity for both ideal and nonideal radio frequency chains are obtained. It is interesting to find that increasing the number of RIS's elements can significantly improve the THz communications system performance. For example, the ergodic capacity can increase up to 25% when the number of elements increases from 40 to 80, which incurs only insignificant costs to the system.