The reconfigurable intelligent surface (RIS), which consists of a large number of passive and low-cost reflecting elements, has been recognized as a revolutionary technology to enhance the performance of future wireless networks. This paper considers an RIS assisted multicast transmission, where a base station (BS) with multiple-antenna multicasts common message to multiple single-antenna mobile users (MUs) under the assistance of an RIS. An equivalent channel model for the considered multicast transmission is analyzed, and then an optimization problem for the corresponding channel capacity is formulated to obtain the optimal covariance matrix and phase shifts. In order to solve the above non-convex and non-differentiable problem, this paper first exploits the gradient descent method and alternating optimization, to approach the locally optimal solution for any number of MUs. Then, this paper considers a special case, which can obtain the global optimal solution, and shows the sufficient and necessary condition for this special case. Finally, the order growth of the maximal capacity is obtained when the numbers of the reflecting elements, the BS antennas, and the MUs go to infinity.
翻译:由大量被动和低成本反射元素组成的可重新配置的智能表面(RIS)已被公认为是提高未来无线网络性能的革命性技术,本文认为是RIS协助的多播式传输,在RIS的协助下,一个拥有多亚硝基多播多播多发信息的基础站(BS)向多个单亚硝基流动用户传递共同信息。对考虑的多播多发传输的同等信道模式进行了分析,然后为相应的频道能力设计了一个优化问题,以获得最佳的共变矩阵和阶段转换。为了解决上述非凝固和无区别的问题,本文首先利用梯度下降方法和交替优化,为任何数量的MUS找到当地最佳解决方案。然后,本文审议了一个特殊案例,可以获得全球最佳解决方案,并表明这一特殊案例的充足和必要条件。最后,当反射元素、BS天线和MU的数量达到一定度时,最大容量的顺序增长是获得的。