We study the performance of a phase-noise impaired double reconfigurable intelligent surface (RIS)-aided multiuser (MU) multiple-input single-output (MISO) system under spatial correlation at both RISs and base-station (BS). The downlink achievable rate is derived in closed-form under maximum ratio transmission (MRT) precoding. In addition, we obtain the optimal phase-shift design at both RISs in closed-form for the considered channel and phase-noise models. Numerical results validate the analytical expressions, and highlight the effects of different system parameters on the achievable rate. Our analysis shows that phase-noise can severely degrade the performance when users do not have direct links to both RISs, and can only be served via the double-reflection link. Also, we show that high spatial correlation at RISs is essential for high achievable rates.
翻译:我们根据空间相关关系,在RIS和基础站(BS)中研究分阶段噪音受损的双相调智能表面(RIS)辅助多用户(MU)多投入单体产出(MISO)系统的性能。在最大比率传输(MRT)预编码下,下行链路可实现率是用封闭式形式得出的。此外,我们还在经过考虑的频道和阶段噪声模型的封闭式RIS中获得了最佳阶段转移设计。数字结果验证了分析表达方式,并突出了不同系统参数对可实现率的影响。我们的分析表明,当用户与TRIS没有直接联系时,如果用户没有直接联系,而只能通过双反位连接来达到,则分阶段淘汰率会严重降低性能。此外,我们还表明,高空间相关性对于高可实现率至关重要。