This paper investigates intelligent reflecting surface (IRS)-aided multicell wireless networks, where an IRS is deployed to assist the joint processing coordinated multipoint (JP-CoMP) transmission from multiple base stations (BSs) to multiple cell-edge users. By taking into account the fairness among cell-edge users, we aim at maximizing the minimum achievable rate of cell-edge users by jointly optimizing the transmit beamforming at the BSs and the phase shifts at the IRS. As a compromise approach, we transform the non-convex max-min problem into an equivalent form based on the mean-square error method, which facilities the design of an efficient suboptimal iterative algorithm. In addition, we investigate two scenarios, namely the single-user system and the multiuser system. For the former scenario, the optimal transmit beamforming is obtained based on the dual subgradient method, while the phase shift matrix is optimized based on the Majorization-Minimization method. For the latter scenario, the transmit beamforming matrix and phase shift matrix are obtained by the second-order cone programming and semidefinite relaxation techniques, respectively. Numerical results demonstrate the significant performance improvement achieved by deploying an IRS. Furthermore, the proposed JP-CoMP design significantly outperforms the conventional coordinated scheduling/coordinated beamforming coordinated multipoint (CS/CB-CoMP) design in terms of max-min rate.
翻译:本文调查智能反映表面(IRS)辅助多细胞无线网络的智能反应(IRS)多细胞无线网络,在这种网络中,部署IRS是为了协助从多基站(BS)向多个细胞顶点用户进行联合处理协调多点传输(JP-COMP)的多点多点传输;通过考虑细胞顶端用户之间的公平性,我们的目标是通过联合优化在BS的传输波束和IRS的分阶段转移,最大限度地提高细胞顶端用户的最低可实现率;作为折中办法,我们根据平均差错率方法,将非凝固最大问题转化为同等形式,为设计一个高效的亚优性次迭代谢算法提供便利;此外,我们调查两种假设,即单一用户系统和多用户系统之间的公平性;在前一种假设中,通过双子梯度方法获得最佳的传输波端用户相容率,同时根据主要化-最小化方法优化阶段转移矩阵;在后一种假设中,以平均差差差差差差差差差差法矩阵和阶段转移矩阵表,分别通过IM-CS的二级同级配置和半定级升级升级的升级改进,分别显示重要的常规设计技术。