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Large Intelligent Surface-Assisted Wireless Communication Exploiting Statistical CSI

IEEE Transactions on Vehicular Technology · 2019 · Vol. 68(8) · pp. 8238–8242
Yu HanWankai TangShi JinChao-Kai WenXiaoli Ma

Abstract

Large intelligent surface (LIS)-assisted wireless communications have drawn attention worldwide. With the use of low-cost LIS on building walls, signals can be reflected by the LIS and sent out along desired directions by controlling its phases, thereby providing supplementary links for wireless communication systems. In this paper, we evaluate the performance of an LIS-assisted large-scale antenna system by formulating a tight upper bound of the ergodic spectral efficiency and investigate the effect of the phase shifts on the ergodic spectral efficiency in different propagation scenarios. In particular, we propose an optimal phase shift design based on the upper bound of the ergodic spectral efficiency and statistical channel state information. Furthermore, we derive the requirement on the quantization bits of the LIS to promise an acceptable spectral efficiency degradation. Numerical results show that using the proposed phase shift design can achieve the maximum ergodic spectral efficiency, and a 2-bit quantizer is sufficient to ensure spectral efficiency degradation of no more than 1 bit/s/Hz.

Advanced Wireless Communication TechnologiesAntenna Design and AnalysisAdvanced Antenna and Metasurface TechnologiesSpectral efficiencyErgodic theoryWirelessUpper and lower boundsQuantization (signal processing)Computer scienceChannel state informationElectronic engineeringDegradation (telecommunications)Channel (broadcasting)

Funding

  • National Science Foundation
  • National Natural Science Foundation of China
  • Industrial Technology Research Institute
  • Ministry of Science and Technology, Taiwan
  • Southeast University
Citations
927
FWCI
72.76
field-weighted impact
References
11
Percentile
100%
vs. same field & year
Citations per year
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References
Spectral efficient protocols for half-duplex fading relay channels
IEEE Journal on Selected Areas in Communications · 2007 · 1,605 citations
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