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Multicell MIMO Communications Relying on Intelligent Reflecting Surfaces

IEEE Transactions on Wireless Communications · 2020 · Vol. 19(8) · pp. 5218–5233
Cunhua PanHong RenKezhi WangWei XuMaged ElkashlanArumugam NallanathanLajos Hanzo

Abstract

Intelligent reflecting surfaces (IRSs) constitute a disruptive wireless communication technique capable of creating a controllable propagation environment. In this paper, we propose to invoke an IRS at the cell boundary of multiple cells to assist the downlink transmission to cell-edge users, whilst mitigating the inter-cell interference, which is a crucial issue in multicell communication systems. We aim for maximizing the weighted sum rate (WSR) of all users through jointly optimizing the active precoding matrices at the base stations (BSs) and the phase shifts at the IRS subject to each BS's power constraint and unit modulus constraint. Both the BSs and the users are equipped with multiple antennas, which enhances the spectral efficiency by exploiting the spatial multiplexing gain. Due to the non-convexity of the problem, we first reformulate it into an equivalent one, which is solved by using the block coordinate descent (BCD) algorithm, where the precoding matrices and phase shifts are alternately optimized. The optimal precoding matrices can be obtained in closed form, when fixing the phase shifts. A pair of efficient algorithms are proposed for solving the phase shift optimization problem, namely the Majorization-Minimization (MM) Algorithm and the Complex Circle Manifold (CCM) Method. Both algorithms are guaranteed to converge to at least locally optimal solutions. We also extend the proposed algorithms to the more general multiple-IRS and network MIMO scenarios. Finally, our simulation results confirm the advantages of introducing IRSs in enhancing the cell-edge user performance.

Advanced Wireless Communication TechnologiesAntenna Design and AnalysisSatellite Communication SystemsPrecodingComputer scienceCoordinate descentTelecommunications linkMIMOBase stationTransmission (telecommunications)Mathematical optimizationWirelessOptimization problem

Funding

  • National Natural Science Foundation of China
  • Engineering and Physical Sciences Research Council
Citations
1,079
FWCI
79.69
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References
65
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100%
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References
Spatially Sparse Precoding in Millimeter Wave MIMO Systems
IEEE Transactions on Wireless Communications · 2014 · 3,631 citations
What Will 5G Be?
IEEE Journal on Selected Areas in Communications · 2014 · 8,099 citations
Multi-Cell MIMO Cooperative Networks: A New Look at Interference
IEEE Journal on Selected Areas in Communications · 2010 · 1,815 citations
Majorization-Minimization Algorithms in Signal Processing, Communications, and Machine Learning
IEEE Transactions on Signal Processing · 2016 · 1,714 citations
Large Intelligent Surface-Assisted Wireless Communication Exploiting Statistical CSI
IEEE Transactions on Vehicular Technology · 2019 · 927 citations
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