论文标题
联合收发器和大型MIMO MMWAVE系统的大型智能表面设计
Joint Transceiver and Large Intelligent Surface Design for Massive MIMO MmWave Systems
论文作者
论文摘要
大型智能表面(LIS)最近成为一种潜在的低成本解决方案,可重塑无线传播环境,以提高光谱效率。在本文中,我们考虑了一个下行链路毫米波(MMWAVE)多输入 - 元素输出(MIMO)系统,其中部署了LIS来协助从基站(BS)到用户设备(UE)的下行链路数据传输。 BS和UE都配备了大量天线,并且使用混合模拟/数字预编码/组合结构来降低硬件成本和能耗。我们的目标是通过共同优化BS(UE)的混合预言系数(UE)来最大化光谱效率。为了解决这个非凸面问题,我们通过利用有效(Cascade)MMWave渠道的固有结构来将复杂的优化问题重新制定为更友好的优化问题。然后开发出一种基于歧管优化(MO)的算法。仿真结果表明,通过精心设计LIS的反射系数,我们提出的方法可以帮助实现具有小通道矩阵条件编号的有利传播环境。此外,它可以达到与最先进算法相媲美的性能,而计算复杂性则较低。
Large intelligent surface (LIS) has recently emerged as a potential low-cost solution to reshape the wireless propagation environment for improving the spectral efficiency. In this paper, we consider a downlink millimeter-wave (mmWave) multiple-input-multiple-output (MIMO) system, where an LIS is deployed to assist the downlink data transmission from a base station (BS) to a user equipment (UE). Both the BS and the UE are equipped with a large number of antennas, and a hybrid analog/digital precoding/combining structure is used to reduce the hardware cost and energy consumption. We aim to maximize the spectral efficiency by jointly optimizing the LIS's reflection coefficients and the hybrid precoder (combiner) at the BS (UE). To tackle this non-convex problem, we reformulate the complex optimization problem into a much more friendly optimization problem by exploiting the inherent structure of the effective (cascade) mmWave channel. A manifold optimization (MO)-based algorithm is then developed. Simulation results show that by carefully devising LIS's reflection coefficients, our proposed method can help realize a favorable propagation environment with a small channel matrix condition number. Besides, it can achieve a performance comparable to those of state-of-the-art algorithms, while at a much lower computational complexity.