Error Propagation and Overhead Reduced Channel Estimation for RIS-Aided Multi-User mmWave Systems: Invited Paper

Zhendong Peng, Cunhua Pan, Gui Zhou, Hong Ren
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引用次数: 2

Abstract

In this paper, we propose a novel two-stage based uplink channel estimation strategy with reduced pilot overhead and error propagation for a reconfigurable intelligent surface (RIS)-aided multi-user (MU) millimeter wave (mmWave) system. Specifically, in Stage I, with the carefully designed RIS phase shift matrix and introduced matching matrices, all users jointly transmit the pilot signals for the estimation of the correlation factors between different paths of the common RIS-base station (BS) channel, which achieves significant multi-user diversity gain. Then, the inherent scaling ambiguity and angle ambiguity of the mmWave cascaded channel are utilized to construct an ambiguous common RIS-BS channel composed of the estimated correlation factors. In Stage II, with the constructed ambiguous common RIS-BS channel, each user independently sends reduced pilots for estimating their specific user-RIS channel so as to obtain the entire cascaded channel. The theoretical number of pilots required for the proposed method is analyzed and the simulation results are presented to validate the effectiveness of this strategy.
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ris辅助多用户毫米波系统的误差传播和开销减少信道估计:特邀论文
在本文中,我们提出了一种新的基于两阶段的上行信道估计策略,该策略减少了可重构智能表面(RIS)辅助多用户(MU)毫米波(mmWave)系统的导频开销和误差传播。具体而言,在第一阶段,通过精心设计的RIS相移矩阵和引入的匹配矩阵,所有用户共同发射导频信号,用于估计公共RIS-基站(BS)信道不同路径之间的相关因子,实现了显著的多用户分集增益。然后,利用毫米波级联信道固有的尺度模糊性和角度模糊性,构建由估计的相关因子组成的模糊公共RIS-BS信道。在阶段II中,通过构建模糊的公共RIS-BS信道,每个用户独立发送减少的导频来估计其特定的用户ris信道,从而获得整个级联信道。分析了该方法所需导频的理论数量,并给出了仿真结果,验证了该策略的有效性。
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