论文标题
通道老化对具有统计CSI的可重新配置智能表面辅助大型MIMO系统的影响
Impact of Channel Aging on Reconfigurable Intelligent Surface Aided Massive MIMO Systems with Statistical CSI
论文作者
论文摘要
将可重构的智能表面(RIS)纳入大量多输入 - 多输出(MMIMO)系统可以通过改善服务死区的用户设备(UES)的性能(UES)来释放下一代网络的潜力。但是,它们对准确的渠道状态信息(CSI)的要求至关重要,尤其是使用UE流动性的应用,诱导渠道衰老使得挑战到足够的服务质量。因此,在这项工作中,我们研究了通道老化对RIS辅助MMIMO系统在空间相关和不完善的CSI条件下的影响。具体而言,通过考虑上行链路训练期间的通道老化和下行链路数据传输阶段,我们首先执行最小平方误差(MMSE)通道估计,以获得具有与无RIS相似的常规系统的UE有效通道。接下来,我们通过使用确定性等效分析(DE)分析来得出闭合零效率(RZF)预编码的可实现的可实现的总和光谱效率(SE)。随后,我们介绍了可实现的总和SE相对于相移的有吸引力的优化以及由于大规模统计量的缓慢变化,因此可以每几个连贯间隔执行的总发射功率。数值结果验证了分析表达式并证明了性能,同时允许为包括UE迁移率在内的常见场景提取有见地的设计结论。特别是,通道老化会降低性能,但可以通过适当选择框架持续时间或增加RIS元素的数量来控制其影响。
The incorporation of reconfigurable intelligent surface (RIS) into massive multiple-input-multiple-output (mMIMO) systems can unleash the potential of next-generation networks by improving the performance of user equipments (UEs) in service dead zones. However, their requirement for accurate channel state information (CSI) is critical, and especially, applications with UE mobility that induce channel aging make challenging the achievement of adequate quality of service. Hence, in this work, we investigate the impact of channel aging on the performance of RIS-assisted mMIMO systems under both spatial correlation and imperfect CSI conditions. Specifically, by accounting for channel aging during both uplink training and downlink data transmission phases, we first perform minimum mean square error (MMSE) channel estimation to obtain the UE effective channels with low overhead similar to conventional systems without RIS. Next, we derive the downlink achievable sum spectral efficiency (SE) with regularized zero-forcing (RZF) precoding in closed-form being dependent only on large-scale statistics by using the deterministic equivalent (DE) analysis. Subsequently, we present the attractive optimization of the achievable sum SE with respect to the phase shifts and the total transmit power that can be performed every several coherence intervals due to the slow variation of the large-scale statistics. Numerical results validate the analytical expressions and demonstrate the performance while allowing the extraction of insightful design conclusions for common scenarios including UE mobility. In particular, channel aging degrades the performance but its impact can be controlled by choosing appropriately the frame duration or by increasing the number of RIS elements.