Reconfigurable Intelligent Surfaces (RIS) are a new paradigm which, with judicious deployment and alignment, can enable more favorable propagation environments and better wireless network design. As such, they can offer a number of potential benefits for next generation wireless systems including improved coverage, better interference management and even security. In this paper, we consider an uplink next generation wireless system where each user is assisted with an RIS. We study the uplink power control problem in this distributed RIS-assisted wireless network. Specifically, we aim to minimize total uplink transmit power of all the users subject to each user's reliable communication requirements at the base station by a joint design of power, receiver filter and RIS phase matrices. We propose an iterative power control algorithm, combined with a successive convex approximation technique to solve the problem with non-convex phase constraints. Numerical results illustrate that distributed RIS assistance leads to uplink power savings when direct links are weak.
翻译:重新配置的智能表面(RIS)是一种新的范例,它经过明智的部署和调整,能够促成更有利的传播环境和更好的无线网络设计。因此,它们可以为下一代无线系统提供一系列潜在的好处,包括扩大覆盖范围、改进干扰管理甚至安全。在本文中,我们考虑将每个用户都得到RIS协助的下一代无线系统连接起来。我们研究了分布式的RIS辅助无线网络的上行链路控制问题。具体地说,我们的目标是通过联合设计电力、接收器过滤器和RIS阶段矩阵,最大限度地减少所有用户在基地站的可靠通信要求下的全部上行链路传输能力。我们建议采用迭接式电源控制算法,同时采用连续的螺旋近似技术,解决非convex阶段制约下的问题。数字结果显示,在直接连接薄弱时,分散的RIS援助可以导致节能的连接。