This paper considers an angle-domain intelligent reflecting surface (IRS) system. We derive maximum likelihood (ML) estimators for the effective angles from the base station (BS) to the user and the effective angles of propagation from the IRS to the user. It is demonstrated that the accuracy of the estimated angles improves with the number of BS antennas. Also, deploying the IRS closer to the BS increases the accuracy of the estimated angle from the IRS to the user. Then, based on the estimated angles, we propose a joint optimization of BS beamforming and IRS beamforming, which achieves similar performance to two benchmark algorithms based on full CSI and the multiple signal classification (MUSIC) method respectively. Simulation results show that the optimized BS beam becomes more focused towards the IRS direction as the number of reflecting elements increases. Furthermore, we derive a closed-form approximation, upper bound and lower bound for the achievable rate. The analytical findings indicate that the achievable rate can be improved by increasing the number of BS antennas or reflecting elements. Specifically, the BS-user link and the BS-IRS-user link can obtain power gains of order $N$ and $NM^2$, respectively, where $N$ is the antenna number and $M$ is the number of reflecting elements.
翻译:本文考虑的是角-角智能反映表面系统(IRS) 。 我们从基地站(BS)到用户获得有效角度的最大可能性(ML)测算器,从IRS到用户的有效传播角度从IRS到有效角度从IRS, 估计角度的精确度随着BS天线的数量增加而提高; 此外, 将IRS部署到离BS更近一点, 使IRS到用户的估计角度更加准确; 然后, 根据估计角度, 我们提议联合优化BS波束成形和IRS成形, 其性能与分别基于完整 CSI和多信号分类方法的两种基准算法相似。 模拟结果表明,随着反映元素数量的增加,最佳BSBS光谱更加侧重于IR方向。 此外, 我们得出一种封闭式近似、高约束和低约束度的近似值。 分析结果表明,通过增加BS天线的数量或反映元素来改进可实现的速率。 具体地说, BS- NS 和 美元 IM 用户 的增量 和 BS- miral 的电码分别反映 $ 美元 美元 和 美元 美元 美元 和 BS- mal 的电算号 。