4.7 Article

Two-Timescale Channel Estimation for Reconfigurable Intelligent Surface Aided Wireless Communications

期刊

IEEE TRANSACTIONS ON COMMUNICATIONS
卷 69, 期 11, 页码 7736-7747

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TCOMM.2021.3072729

关键词

Channel estimation; Wireless communication; Uplink; Communication systems; Precoding; Communication system security; Signal to noise ratio; Reconfigurable intelligent surface; channel estimation; pilot overhead

资金

  1. National Key Research and Development Program of China [2020YFB1807201]
  2. National Natural Science Foundation of China [62031019]
  3. European Commission through the H2020-MSCA-ITN META WIRELESS Research Project [956256]

向作者/读者索取更多资源

The paper proposes a two-timescale channel estimation framework leveraging the high-dimensional quasi-static BS-RIS channel and low-dimensional mobile RIS-UE channel. A dual-link pilot transmission scheme and a coordinate descent-based algorithm are designed. The average pilot overhead can be reduced in the long term.
Channel estimation is challenging for the reconfigurable intelligent surface (RIS)-aided wireless communications. Since the number of coefficients of the cascaded channel among the base station (BS), the RIS, and the user equipment (UE), is the product of the number of BS antennas, the number of RIS elements, and the number of UEs, the pilot overhead can be prohibitively high. In this paper, we propose a two-timescale channel estimation framework to exploit the property that the BS-RIS channel is high-dimensional but quasi-static, while the RIS-UE channel is mobile but low-dimensional. Specifically, to estimate the quasi-static BS-RIS channel, we propose a dual-link pilot transmission scheme, where the BS transmits downlink pilots and receives uplink pilots reflected by the RIS. Then, we propose a coordinate descent-based algorithm to recover the BS-RIS channel. Since the quasi-static BS-RIS channel is estimated less frequently than the mobile channel is, the average pilot overhead can be reduced from a long-term perspective. Although the mobile RIS-UE channel has to be frequently estimated in a small timescale, the associated pilot overhead is low thanks to its low dimension. Simulation results show that the proposed two-timescale channel estimation framework can achieve accurate channel estimation with low pilot overhead.

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