论文标题

在梁未对准存在下,RIS辅助的Terahertz链接的分析表征

Analytical characterization of RIS-aided terahertz links in the presence of beam misalignment

论文作者

Papasotiriou, Evangelos N., Droulias, Sotiris, Alexiou, Angeliki

论文摘要

Terahertz(THZ)频带最近在无线通信中引起了极大的关注,作为为苛刻应用提供必要的高带宽的潜在候选者。但是,随着频率的增加,通信链接变得更容易受到阻塞的影响,而路径则增加。尽管可以通过明智地利用定向光束和可重新配置的智能表面(RISS)来减轻两种效果,但高方向性可能会增加RIS指导的光束之间不希望的未对准的概率。因此,表征和理解RIS AID的THZ链接中未对准的随机行为至关重要。在这项工作中,理论上研究了RIS辅助链路中的光束未对准,并得出了分析模型,通过数值计算来验证其有效性。已经证明,指向转向平面上或正常在转向平面上的误差之间的随机行为有一个区别,对未对准的链路鲁棒性有直接的后果。分析模型捕获了这些定性不同条件下未对准的影响,并提供了评估随机RIS性能相对于关键链路参数的必要工具,例如发射机的光束宽度,发射机-RIS-RIS距离,RIS-RIS-RECEIVER距离以及RIS的转向角度。

The terahertz (THz) frequency band has recently attracted considerable attention in wireless communications as potential candidate for providing the necessary high bandwidth for demanding applications. With increasing frequency, however, the communication link becomes more vulnerable to blockage and pathloss increases. While both effects can be mitigated with the judicious utilization of directional beams and Reconfigurable Intelligent Surfaces (RISs), high directivity could potentially increase the probability of undesired misalignment between the beam that is steered by the RIS, and the user. It is therefore crucial to characterize and understand the stochastic behavior of misalignment in RIS-aided THz links. In this work, beam misalignment in RIS-aided links is studied theoretically and analytical models are derived, the validity of which is verified through numerical calculations. It is demonstrated that there is a distinction in the stochastic behavior of misalignment between pointing errors that occur on the steering plane or normally to the steering plane, with direct consequences on the link robustness on misalignment. The analytical models capture the impact of misalignment under these qualitatively different conditions and provide the necessary tools for assessing the stochastic RIS performance with respect to crucial link parameters, such as the transmitter's beam width, the transmitter-RIS distance, the RIS-receiver distance, and the steering angle of the RIS.

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