Reconfigurable intelligent surface (RIS) provides a promising way to build programmable wireless transmission environments. Owing to the massive number of controllable reflecting elements on the surface, RIS is capable of providing considerable passive beamforming gains. At present, most related works mainly consider the modeling, design, performance analysis and optimization of single-RIS-assisted systems. Although there are a few of works that investigate multiple RISs individually serving their associated users, the cooperation among multiple RISs is not well considered as yet. To fill the gap, this paper studies a cooperative beamforming design for multi-RIS-assisted communication systems, where multiple RISs are deployed to assist the downlink communications from a base station to its users. To do so, we first model the general channel from the base station to the users for arbitrary number of reflection links. Then, we formulate an optimization problem to maximize the sum rate of all users. Analysis shows that the formulated problem is difficult to solve due to its non-convexity and the interactions among the decision variables. To solve it effectively, we first decouple the problem into three disjoint subproblems. Then, by introducing appropriate auxiliary variables, we derive the closed-form expressions for the decision variables and propose a low-complexity cooperative beamforming algorithm. Simulation results have verified the effectiveness of the proposed algorithm through comparison with various baseline methods. Furthermore, these results also unveil that, for the sum rate maximization, distributing the reflecting elements among multiple RISs is superior to deploying them at one single RIS.
翻译:重新配置智能表面(RIS)为构建可编程的无线传输环境提供了有希望的方法。由于地面上有大量可控反射元素,RIS能够提供大量被动波束成形收益。目前,大多数相关工作主要考虑单一反射辅助系统的建模、设计、性能分析和优化。虽然有些工作对多个TRIS单独为其相关用户服务,但多个RIS之间的合作尚未得到很好的考虑。为了填补空白,本文研究多RIS辅助通信系统的合作型构型设计,在该系统中,部署多个RIS协助基地站向用户进行下链接通信。为了做到这一点,我们首先将基地站的一般频道建模给用户进行任意数反射连接。然后,我们提出优化问题,以最大限度地提高所有用户的总比率。分析表明,由于不兼容性和各种决定变量之间的相互作用,因此难以解决问题。为了有效解决这一问题,我们首先将问题分解成三个不相交错的次相联的次相联式通信系统,为此,我们首先从基站站站站向用户进行下连接的通信连接通信连接通信连接的通信连接通信。要先通过模拟变校验,然后提出一个固定式变式变法,然后提出一个固定变式的变校算。