The Reconfigurable Intelligent Surface (RIS) constitutes one of the prominent technologies for the next 6-th Generation (6G) of wireless communications. It is envisioned to enhance signal coverage in cases where obstacles block the direct communication from Base Stations (BSs), and when high carrier frequencies are used that are sensitive to attenuation losses. In the literature, the exploitation of RISs is exclusively based on traditional coherent demodulation, which necessitates the availability of Channel State Information (CSI). Given the CSI, a multi-antenna BS or a dedicated controller computes the pre/post spatial coders and the RIS configuration. The latter tasks require significant amount of time and resources, which may not be affordable when the channel is time-varying or the CSI is not accurate enough. In this paper, we consider the uplink between a single-antenna user and a multi-antenna BS and present a novel RIS-empowered Orthogonal Frequency Division Multiplexing (OFDM) communication system based on the differential phase shift keying, which is suitable for high noise and/or mobility scenarios. Considering both an idealistic and a realistic channel model, analytical expressions for the Signal-to-Interference and Noise Ratio (SINR) and the Symbol Error Probability (SEP) of the proposed non-coherent RIS-empowered system are presented. Our extensive computer simulation results verify the accuracy of the presented analysis and showcase the proposed system's performance and superiority over coherent demodulation in different mobility and spatial correlation scenarios.
翻译:重新配置的智能表面(RIS)是下一代无线通信第6代(6G)的突出技术之一,设想在以下情况下加强信号覆盖范围:阻碍基地站直接通信的障碍,以及使用对减轻损失敏感的高载频率;在文献中,对RIS的利用完全基于传统一致的降压,这需要提供频道国信息的提供。鉴于CSI,一个多保险BS或专门的空间控制器对空间代码器和RIS配置进行前/后空调前/后级的配置,后者的任务需要大量的时间和资源,而当频道时间变换或CSI不够准确时,这种时间和资源可能无法负担得起。在本文中,我们考虑单电网用户和多电网BS之间的上层连接,并基于不同阶段转换键的新型RIS-极强Orthology频率司(OFDM)的显示通信系统,适合高噪音和/或移动性能前置的高级时间和资源,后者可能无法负担得起。考虑到我们模型和模拟系统不透明性、不透明性、不透明性、不透明性、不透明性、不透明性、不透明性、不透明性、不透明的系统分析。