Double-IRS Assisted Multi-User MIMO: Cooperative Passive Beamforming Design
arXiv:2008.13701 · doi:10.1109/TWC.2021.3059945
Abstract
Intelligent reflecting surface (IRS) has emerged as an enabling technology to achieve smart and reconfigurable wireless communication environment cost-effectively. Prior works on IRS mainly consider its passive beamforming design and performance optimization without the inter-IRS signal reflection, which thus do not unveil the full potential of multi-IRS assisted wireless networks. In this paper, we study a double-IRS assisted multi-user communication system with the \emph{cooperative} passive beamforming design that captures the multiplicative beamforming gain from the inter-IRS channel. Under the general channel setup with the co-existence of both double- and single-reflection links, we jointly optimize the (active) receive beamforming at the base station (BS) and the cooperative (passive) reflect beamforming at the two distributed IRSs (deployed near the BS and users, respectively) to maximize the minimum signal-to-interference-plus-noise ratio (SINR) of all users. Moreover, for the single-user and multi-user setups, we analytically show the superior performance of the double-IRS cooperative system over the conventional single-IRS system in terms of the maximum signal-to-noise ratio (SNR) and multi-user effective channel rank, respectively. Simulation results validate our analytical results and show the practical advantages of the proposed double-IRS system with cooperative passive beamforming designs.
Early access in IEEE TWC (https://ieeexplore.ieee.org/document/9362274). Consider the following fundamental question: whether partitioning the IRS elements/subsurfaces into distributed but cooperative IRSs is superior to combining them as one single IRS or not. Efficient channel estimation (https://ieeexplore.ieee.org/document/9373363) and (arXiv:2011.00738)
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- Channel Customization for Joint Tx-RISs-Rx Design in Hybrid mmWave Systems
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- Intelligent reflecting surface enhanced wideband MIMO-OFDM communications: From practical model to reflection optimization
- An Efficient Convex-Hull Relaxation Based Algorithm for Multi-User Discrete Passive Beamforming
- Intelligent Reflecting Surface Aided Wireless Energy and Information Transmission: An Overview
- Managing Interference and Leveraging Secondary Reflections Amongst Multiple IRSs
- Cooperative Multi-Beam Routing for Multi-IRS Aided Massive MIMO
- Double Intelligent Reflecting Surface-assisted Multi-User MIMO mmWave Systems with Hybrid Precoding