使能ris通信中的阻塞效应

Fethi Okta, Ömer Faruk Akyol, S. T. Basaran
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引用次数: 0

摘要

可重构智能表面(RIS)被认为是通过控制传播介质来提高通信系统性能的重要候选。在发射器和接收器之间存在阻塞的非视距通信场景中,启用ris的系统有许多潜在的场景。但是,在发送者- ris和接收者- ris通道之间也可能发生阻塞。这项工作提出了一个具有RIS的现实系统模型,在整个通信通道中存在阻塞。对于所考虑的系统模型,可实现的数据速率是在阻塞模型遵循泊松点过程的环境中解析导出的。考虑到实际部署场景,本文提出的系统采用离散相移RIS。因此,研究了RIS单元数、编码位数和阻塞密度对可实现数据速率的影响。该系统的性能在很大程度上取决于阻塞的强度。通过大量的仿真验证了分析结果的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Blockage Effects in RIS-enabled Communication
Reconfigurable Intelligent Surfaces (RIS) are considered an important candidate to improve the performance of communication systems via controlling the propagation medium. There are number of potential scenarios for RIS-enabled systems in the non-line-of-sight communication scenarios while having blockages between transmitter and receiver. However, blockages may also occur between transmitter-RIS and RIS-receiver channels. This work proposes a realistic system model with RIS in the presence of blockages within the whole communication channels. For the considered system model, the achievable data rate is derived analytically in the environment where the blockage model follows the Poisson point process. Discrete phase shifting RIS is used in the proposed system due to the practical deployment scenarios. Thus, the effects of the number of RIS elements, coding bits number, and density of the blockages on achievable data rate are investigated. The performance of the proposed system depends heavily on the intensity of the blockages. The accuracy of the analytical results is verified via extensive simulations.
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