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Energy-Efficient Hybrid Analog and Digital Precoding for MmWave MIMO Systems With Large Antenna Arrays

IEEE Journal on Selected Areas in Communications · 2016 · Vol. 34(4) · pp. 998–1009
Xinyu GaoLinglong DaiShuangfeng HanI Chih‐LinRobert W. Heath

Abstract

Millimeter wave (mmWave) MIMO will likely use hybrid analog and digital precoding, which uses a small number of RF chains to reduce the energy consumption associated with mixed signal components like analog-to-digital components not to mention baseband processing complexity. However, most hybrid precoding techniques consider a fully connected architecture requiring a large number of phase shifters, which is also energy-intensive. In this paper, we focus on the more energy-efficient hybrid precoding with subconnected architecture, and propose a successive interference cancelation (SIC)-based hybrid precoding with near-optimal performance and low complexity. Inspired by the idea of SIC for multiuser signal detection, we first propose to decompose the total achievable rate optimization problem with nonconvex constraints into a series of simple subrate optimization problems, each of which only considers one subantenna array. Then, we prove that maximizing the achievable subrate of each subantenna array is equivalent to simply seeking a precoding vector sufficiently close (in terms of Euclidean distance) to the unconstrained optimal solution. Finally, we propose a low-complexity algorithm to realize SIC-based hybrid precoding, which can avoid the need for the singular value decomposition (SVD) and matrix inversion. Complexity evaluation shows that the complexity of SIC-based hybrid precoding is only about 10% as complex as that of the recently proposed spatially sparse precoding in typical mmWave MIMO systems. Simulation results verify that SIC-based hybrid precoding is near-optimal and enjoys higher energy efficiency than the spatially sparse precoding and the fully digital precoding.

Millimeter-Wave Propagation and ModelingAdvanced MIMO Systems OptimizationMicrowave Engineering and WaveguidesPrecodingZero-forcing precodingMIMOComputer scienceBasebandElectronic engineeringAlgorithmComputational complexity theoryTopology (electrical circuits)Telecommunications

Funding

  • National Natural Science Foundation of China
  • Natural Science Foundation of Beijing Municipality
Citations
1,035
FWCI
75.13
field-weighted impact
References
39
Percentile
100%
vs. same field & year
Citations per year
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References
Millimeter Wave Beamforming for Wireless Backhaul and Access in Small Cell Networks
IEEE Transactions on Communications · 2013 · 1,111 citations
Spatially Sparse Precoding in Millimeter Wave MIMO Systems
IEEE Transactions on Wireless Communications · 2014 · 3,631 citations
An introduction to millimeter-wave mobile broadband systems
IEEE Communications Magazine · 2011 · 2,603 citations
Signal Recovery From Random Measurements Via Orthogonal Matching Pursuit
IEEE Transactions on Information Theory · 2007 · 9,592 citations
Noncooperative Cellular Wireless with Unlimited Numbers of Base Station Antennas
IEEE Transactions on Wireless Communications · 2010 · 6,448 citations
Energy-constrained modulation optimization
IEEE Transactions on Wireless Communications · 2005 · 1,501 citations
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Energy-Efficient Hybrid Analog and Digital Precoding for MmWave MIMO Systems With Large Antenna Arrays · Scinovex