Extremely large-scale multiple-input multiple-output (XL-MIMO) is the development trend of future wireless communications. However, the extremely large-scale antenna array could bring inevitable nearfield and dual-wideband effects that seriously reduce the transmission performance. This paper proposes an algorithmic framework to design the beam combining for the near-field wideband XL-MIMO uplink transmissions assisted by holographic metasurface antennas (HMAs). Firstly, we introduce a spherical-wave-based channel model that simultaneously takes into account both the near-field and dual-wideband effects. Based on such a model, we then formulate the HMA-based beam combining problem for the proposed XL-MIMO communications, which is challenging due to the nonlinear coupling of high dimensional HMA weights and baseband combiners. We further present a sum-mean-square-error-minimization-based algorithmic framework. Numerical results showcase that the proposed scheme can effectively alleviate the sum-rate loss caused by the near-field and dual-wideband effects in HMA-assisted XL-MIMO systems. Meanwhile, the proposed HMA-based scheme can achieve a higher sum rate than the conventional phase-shifter-based hybrid analog/digital one with the same array aperture.
翻译:超大型多投入多输出数据(XL-MIMO)是未来无线通信的发展趋势,然而,超大型天线阵列可能带来不可避免的近地和双宽波段效应,从而严重降低传输性能。本文件提出一个算法框架,用于设计由全息超表面天线(HMAs)辅助的近地宽XL-MIMO上链传输的光束组合。首先,我们引入一个球波信道模型,同时考虑近地和双宽波段效应。根据这一模型,我们然后为拟议的XL-MIMO通信制定基于HMA的光束结合问题,由于高维HMA重量和基波段组合器的非线性连接,这一问题具有挑战性。我们进一步介绍一个基于全景色超平面超平面超光层超光层超光层超光层超光层光速-最小化的算法框架。数字波段计划可以有效减轻基于近地和双宽波段效应造成的超地超地段损失。我们随后为拟议的HMA级双宽波段波段波段组合组合组合组合组合组合组合组合组合,同时实现HMA型平基平流平流模型系统。