In this paper, a novel uplink communication for the transmissive reconfigurable metasurface (RMS) multi-antenna system with orthogonal frequency division multiple access (OFDMA) is investigated. Specifically, a transmissive RMS-based receiver equipped with a single receiving antenna is first proposed, and a far-near field channel model based on planar waves and spherical waves is given. Then, in order to maximize the system sum-rate of uplink communications, we formulate a joint optimization problem over subcarrier allocation, power allocation and RMS transmissive coefficient design. Due to the coupling of optimization variables, the optimization problem is non-convex, so it is challenging to solve it directly. In order to tackle this problem, the alternating optimization (AO) algorithm is used to decouple the optimization variables and divide the problem into two sub-problems to solve. First, the problem of joint subcarrier allocation and power allocation is solved via the Lagrangian dual decomposition method. Then, the RMS transmissive coefficient design can be obtained by applying difference-of-convex (DC) programming, successive convex approximation (SCA) and penalty function methods. Finally, the two sub-problems are iterated alternately until convergence is achieved. Numerical simulation results verify that the proposed algorithm has good convergence performance and can improve system sum-rate compared with other benchmark algorithms.
翻译:在本文中,我们调查了一种新型的连接通信系统,用于对可转式重新整合的元表面(RMS)多安特纳系统进行新颖的连接。具体地说,一个配置单一接收天线的基于RMS的中继接收器,首先提出一个配备单一接收天线的移动式RMS接收器,然后给出一个以计划波和球波为基础的远近的外地频道模型。然后,为了最大限度地扩大系统加固连接通信的系统总和比例,我们在子载体分配、权力分配和RMS传输系数设计上形成了一个联合的优化问题。由于优化变量的混合,优化问题是非convex问题,因此直接解决这一问题是困难的。为了解决这一问题,使用交替优化(AO)算法将优化变量分解,将问题分为两个子载体连接通信通信的配置和权力分配问题,首先,通过Lagrangetian 双重分解配置方法解决。然后,通过应用差异组合组合的组合(DC) 和交替的排序后,RMMS的系数设计可以通过应用差异-cal-comnalalal comlational comlational comliculational comculational commax commax compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal comp compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal compal commal commal compal compal compal compal