The reconfigurable intelligent surface (RIS) has aroused much research attention recently due to its potential benefits in 5G and beyond wireless networks. This paper considers a general multi-hop RIS-aided multi-user communication system and the weighted sum-rate maximization problem is studied by jointly designing the active beamforming matrix at the base station and multiple phase-shift matrices at the RISs (considering both continuous and discrete phase constraints). To tackle the resulting highly nonconvex optimization problem, a problem-tailored low-complexity and globally convergent algorithm based on block minorization-maximization (BMM) is proposed. The effectiveness of the proposed BMM approach and the performance improvement gained with multi-hop RISs are both demonstrated through numerical simulations. The merits of the proposed algorithms are further illustrated by indicating their adaptivity in solving many other RIS-related system designs.
翻译:最近,由于在5G和无线网络之外的潜在好处,可重新配置的智能表面(RIS)引起了许多研究关注。本文件审议了一个通用的多视多视多频帮助多用户通信系统,并且通过在基站联合设计主动波束成形矩阵和在RIS联合设计多级轮班矩阵(考虑到连续和离散阶段的制约因素),研究了加权总和最大化问题。为了解决由此产生的高度非对流优化问题,提出了基于区块小化-最大化(BMM)的低问题定制和全球趋同算法(BMM)。拟议的BMM方法的有效性和在多光速风险评估中获得的性能改进都通过数字模拟得到证明。提议的算法的优点通过表明它们在解决其他许多与RIS有关的系统设计方面的适应性来进一步说明。