论文标题

RIS辅助的无细胞大型MIMO系统的两次尺度传输设计

Two-Timescale Transmission Design for RIS-Aided Cell-Free Massive MIMO Systems

论文作者

Dai, Jianxin, Ge, Jin, Zhi, Kangda, Pan, Cunhua, Zhang, Zaichen, Wang, Jiangzhou, You, Xiaohu

论文摘要

本文调查了上行链路可重新配置智能表面(RIS)辅助大量大量多输入多输出(CF-MMIMO)系统的两次传输设计的性能。我们考虑基于长期统计通道状态信息(CSI)的RICIAN频道模型,并设计RISS的被动边界,而中央处理单元(CPU)则利用最大比率组合(MRC)技术来基于直接的整体通道进行完全集中的处理,这是直接和RIS频道的叠加。首先,我们在任意数量的访问点(AP)天线和RIS反映元素的上行链路可实现速率的闭合形式近似表达中。依靠派生的表达式,我们理论上分析了将RIS部署到无单元的MMIMO系统中并汲取明确的见解的好处。然后,基于统计CSI下的封闭形式的近似速率表达式,我们根据遗传算法(GA)优化RISS的相位移位,以分别最大化用户的总和率和最低用户速率。最后,数值结果证明了我们派生的表达式的正确性以及将大尺寸RISS部署到无单元的MMIMO系统中的好处。此外,我们研究了GA的最优性和收敛行为以验证其有效性。为了进行更有益的分析,我们给出能源效率的封闭式表达,并提出数值结果,以显示借助RISS的高能量效率。此外,我们的结果揭示了通过无细胞网络在RIS AID的MMIMO系统中分布式部署AP和RIS的好处。

This paper investigates the performance of a two-timescale transmission design for uplink reconfigurable intelligent surface (RIS)-aided cell-free massive multiple-input multiple-output (CF-mMIMO) systems. We consider the Rician channel model and design the passive beamforming of RISs based on the long-time statistical channel state information (CSI), while the central processing unit (CPU) utilizes the maximum ratio combining (MRC) technology to perform fully centralized processing based on the instantaneous overall channel, which are the superposition of the direct and RIS-reflected channels. Firstly, we derive the closed-form approximate expression of the uplink achievable rate for arbitrary numbers of access point (AP) antennas and RIS reflecting elements. Relying on the derived expressions, we theoretically analyze the benefits of deploying RIS into cell-free mMIMO systems and draw explicit insights. Then, based on the closed-form approximate rate expression under statistical CSI, we optimize the phase shifts of RISs based on the genetic algorithm (GA) to maximize the sum rate and minimum rate of users, respectively. Finally, the numerical results demonstrate the correctness of our derived expressions and the benefits of deploying large-size RISs into cell-free mMIMO systems. Also, we investigate the optimality and convergence behaviors of the GA to verify its effectiveness. To give more beneficial analysis, we give the closed-form expression of the energy efficiency and present numerical results to show the high energy efficiency of the system with the help of RISs. Besides, our results have revealed the benefits of distributed deployment of APs and RISs in the RIS-aided mMIMO system with cell-free networks.

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