As communication systems that employ millimeter wave (mmWave) frequency bands must use large antenna arrays to overcome the severe propagation loss of mmWave signals, hybrid beamforming has been considered as an integral component of mmWave communications. Recently, intelligent reflecting surface (IRS) has been proposed as an innovative technology that can significantly improve the performance of mmWave communication systems through the use of low-cost passive reflecting elements. In this paper, we study IRS-aided mmWave multiple-input multiple-output (MIMO) systems with hybrid beamforming architectures. We first exploit the sparse-scattering structure and large dimension of mmWave channels to develop the joint design of IRS reflection matrix and hybrid beamformer for narrowband MIMO systems. Then, we generalize the proposed joint design to broadband MIMO systems with orthogonal frequency division multiplexing (OFDM) modulation by leveraging the angular sparsity of frequency-selective mmWave channels. Simulation results demonstrate that the proposed joint designs can significantly enhance the spectral efficiency of the systems of interest and achieve superior performance over the existing designs.
翻译:由于使用毫米波(mmWave)频率波段的通信系统必须使用大型天线阵列来克服毫米Wave信号的严重传播损失,混合波束成型被视为毫米波浪通信的一个组成部分。最近,提出了智能反射表面(IRS)作为创新技术,通过使用低成本的被动反射波反射元件,大大改进毫米波浪通信系统的性能。在本文件中,我们研究了具有混合波形结构的IRS辅助毫米Wave多输出系统(MIIMO)。我们首先利用微小散射结构和毫米波浪频道的大尺寸来开发IRS反射矩阵的联合设计,以及窄波段MIMO系统的混合光束。然后,我们将拟议的联合设计推广到宽带MIMOD系统,利用频率选择毫米波段多路段的角宽度。模拟结果表明,拟议的联合设计可以大大提高光谱系统的兴趣效率,并比现有设计取得优超强性性能。