Spatial Modulation for Terahertz Communication Systems with Hardware Impairments

  • Tianqi Mao
  • , Qi Wang
  • , Zhaocheng Wang*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

29 Citations (Scopus)

Abstract

Terahertz (THz) communication has emerged as a promising technology that efficiently alleviates the scarcity of the frequency resources, and is capable of providing Terabit-per-second (Tbps) data transmission. However, the hardware impairments, which are usually omitted in the low-rate systems, have a detrimental impact on the THz communication link. These hardware imperfections, including in-phase/quadrature (I/Q) imbalance, phase noise and nonlinearities of the power amplifier, can be approximately modelled as complex-Gaussian distortions at both the transmitter and the receiver. In this paper, the channel estimator and signal detector (CE/SD) design of the THz-band spatial modulation (THz-SM) system is investigated, where the counterparts for classical low-rate SM are no longer applicable. More specifically, a dual-stage maximum-likelihood (ML) channel estimator is proposed containing two phases of candidate acquirement and exhaustive search. Then a novel low-complexity mean-least-squares (MLS) channel estimator is developed by considering the hardware impairments in an averaging manner. Besides, the optimal detector for THz-SM is designed by taking hardware impairments into account. Simulation results validate that the proposed CE/SD design is capable of attaining reliable data transmission in THz-SM with hardware imperfections.

Original languageEnglish
Article number9006957
Pages (from-to)4553-4557
Number of pages5
JournalIEEE Transactions on Vehicular Technology
Volume69
Issue number4
DOIs
Publication statusPublished - Apr 2020
Externally publishedYes

Keywords

  • channel estimation and signal detection (CE/SD)
  • dual-stage maximum-likelihood (ML)
  • hardware impairment
  • mean-least-squares (MLS)
  • spatial modulation (SM)
  • Terahertz (THz) communication

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