论文标题
用于6G无线系统的3D非平稳渠道模型,采用智能反射表面
A 3D Non-Stationary Channel Model for 6G Wireless Systems Employing Intelligent Reflecting Surface
论文作者
论文摘要
作为第六代移动通信(6G)移动通信的关键技术之一,智能反映表面IRS)具有低功耗,低成本和简单设计方法的优势。但是频道建模目前仍然是该领域的一个空缺问题。在本文中,我们建议使用IRS的大规模多输入多输入(MIMO)通信系统,提出了一个三维(3D)几何的随机模型(GBSM)。该模型支持发射器,接收器和簇的运动。在建议的模型中也考虑了线性阵列和平面阵列上簇的演变。此外,还将反射系数的产生纳入模型,并提出了IRS辅助的子渠道的路径损失。转向矢量是在基站与IRS合作的基站设立的。通过研究统计特性,例如时间自相关函数和空间相关函数,可以验证非平稳性能。模拟结果与分析结果之间的良好一致性说明了提出的通道模型的正确性。
As one of the key technologies for the sixth generation (6G) mobile communications, intelligent reflecting surface IRS) has the advantages of low power consumption, low cost, and simple design methods. But channel modeling is still an open issue in this field currently. In this paper, we propose a three-dimensional (3D) geometry based stochastic model (GBSM) for a massive multiple-input multiple-output (MIMO) communication system employing IRS. The model supports the movements of the transmitter, the receiver, and clusters. The evolution of clusters on the linear array and planar array is also considered in the proposed model. In addition, the generation of reflecting coefficient is incorporated into the model and the path loss of the sub-channel assisted by IRS is also proposed. The steering vector is set up at the base station for the cooperation with IRS. Through studying statistical properties such as the temporal autocorrelation function and space correlation function, the nonstationary properties are verified. The good agreement between the simulation results and the analytical results illustrates the correctness of the proposed channel model.