论文标题
具有不完美硬件的RIS辅助多用户大型MIMO系统的性能分析和优化
Performance Analysis and Optimization for RIS-Assisted Multi-User Massive MIMO Systems with Imperfect Hardware
论文作者
论文摘要
论文研究具有不完美硬件的可重构智能表面(RIS)辅助多用户上行链路大量多输入多输出(MIMO)系统。在RIS上,纸张考虑了相位噪声,而在基站,本文考虑了射频障碍和低分辨率类似物到数字转换器的考虑。该论文在里奇亚式褪色通道下的封闭形式的千古式可实现率的近似表达式。对于无限数量的天线和无限反射元件数量的情况,得出渐近数据速率以提供新的设计见解。派生的功率缩放定律表明,在保证所需的系统性能时,当M无限进行时,用户的发射功率最多可以按1/m缩小,或者当M和N无限时通过因子1/(MN),其中m是天线的数量,n是反射单元的数量。此外,基于遗传算法提出了一种优化算法来解决相移优化问题,目的是最大化系统的总和速率。此外,考虑了离散相移的优化问题。最后,提供数值结果以验证分析结果的正确性。
The paper studies a reconfigurable intelligent surface (RIS)-assisted multi-user uplink massive multiple-input multiple-output (MIMO) system with imperfect hardware. At the RIS, the paper considers phase noise, while at the base station, the paper takes into consideration the radio frequency impairments and low-resolution analog-to-digital converters. The paper derives approximate expressions for the ergodic achievable rate in closed forms under Rician fading channels. For the cases of infinite numbers of antennas and infinite numbers of reflecting elements, asymptotic data rates are derived to provide new design insights. The derived power scaling laws indicate that while guaranteeing a required system performance, the transmit power of the users can be scaled down at most by the factor 1/M when M goes infinite, or by the factor 1/(MN) when M and N go infinite, where M is the number of antennas and N is the number of the reflecting units. Furthermore, an optimization algorithm is proposed based on the genetic algorithm to solve the phase shift optimization problem with the aim of maximizing the sum rate of the system. Additionally, the optimization problem with discrete phase shifts is considered. Finally, numerical results are provided to validate the correctness of the analytical results.