论文标题

优化由多个可重构智能表面辅助的MIMO系统中可实现的速率

Optimizing the Achievable Rate in MIMO Systems Assisted by Multiple Reconfigurable Intelligent Surfaces

论文作者

Souto, Nuno, Silva, João Carlos

论文摘要

近年来,人们对可重构智能表面(RISS)的兴趣越来越多,作为实现智能无线电传播环境的推动力,可以在未来的无线网络中提供低能消耗,从而提供性能提高。但是,要收获RIS的潜在收益,至关重要的是共同设计RIS元素的传输预编码器和相位。在这种情况下,在本文中,我们研究了在平行或多跳配置中使用多个RIS面板的使用,目的是协助多流多输入多输入多输出(MIMO)通信。为了解决针对可实现速率的预编码和RIS元素的非convex联合优化问题,我们提出了一种基于单调加速近端梯度(MAPG)方法的迭代算法,其中包括用于改善融合速度和监测变量的杂物降低的杂物降低的杂物,以实现algorith的效果。然后,基于足够的下降属性,我们对算法进行了详细的收敛分析,其中包括步骤大小的表达式。模拟导致不同的情况表明,除了有效外,提出的方法通常可以比其他基准方案获得更高的速率。

In recent years there has been a growing interest in reconfigurable intelligent surfaces (RISs) as enablers for the realization of smart radio propagation environments which can provide performance improvements with low energy consumption in future wireless networks. However, to reap the potential gains of RIS it is crucial to jointly design both the transmit precoder and the phases of the RIS elements. Within this context, in this paper we study the use of multiple RIS panels in a parallel or multi-hop configuration with the aim of assisting a multi-stream multiple-input multiple-output (MIMO) communication. To solve the nonconvex joint optimization problem of the precoder and RIS elements targeted at maximizing the achievable rate, we propose an iterative algorithm based on the monotone accelerated proximal gradient (mAPG) method which includes an extrapolation step for improving the convergence speed and monitoring variables for ensuring sufficient descent of the algorithm. Based on the sufficient descent property we then present a detailed convergence analysis of the algorithm which includes expressions for the step size. Simulation results in different scenarios show that, besides being effective, the proposed approach can often achieve higher rates than other benchmarked schemes.

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