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6G Wireless Communications Networks: A Comprehensive Survey

  • Muntadher Alsabah
  • , Marwah Abdulrazzaq Naser
  • , Basheera M. Mahmmod
  • , Sadiq H. Abdulhussain
  • , Mohammad R. Eissa
  • , Ahmed Al-Baidhani
  • , Nor K. Noordin
  • , Sadiq M. Sait
  • , Khaled A. Al-Utaibi*
  • , Fazirul Hashim
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

546 Scopus citations

Abstract

The commercial fifth-generation (5G) wireless communications networks have already been deployed with the aim of providing high data rates. However, the rapid growth in the number of smart devices and the emergence of the Internet of Everything (IoE) applications, which require an ultra-reliable and low-latency communication, will result in a substantial burden on the 5G wireless networks. As such, the data rate that could be supplied by 5G networks will unlikely sustain the enormous ongoing data traffic explosion. This has motivated research into continuing to advance the existing wireless networks toward the future generation of cellular systems, known as sixth generation (6G). Therefore, it is essential to provide a prospective vision of the 6G and the key enabling technologies for realizing future networks. To this end, this paper presents a comprehensive review/survey of the future evolution of 6G networks. Specifically, the objective of the paper is to provide a comprehensive review/survey about the key enabling technologies for 6G networks, which include a discussion about the main operation principles of each technology, envisioned potential applications, current state-of-the-art research, and the related technical challenges. Overall, this paper provides useful information for industries and academic researchers and discusses the potentials for opening up new research directions.

Original languageEnglish
Pages (from-to)148191-148243
Number of pages53
JournalIEEE Access
Volume9
DOIs
StatePublished - 2021

Bibliographical note

Publisher Copyright:
© 2013 IEEE.

Keywords

  • 6G
  • NOMA
  • artificial intelligence
  • backscatter
  • blockchain
  • cell-free massive MIMO
  • edge computing
  • energy harvesting
  • full duplex
  • holographic radio
  • intelligent reflecting surfaces
  • machine learning
  • mmWave
  • optical wireless communications
  • orthogonal multiple access
  • rate-splitting multiple access
  • spatial modulation
  • terahertz (THz)

ASJC Scopus subject areas

  • General Computer Science
  • General Materials Science
  • General Engineering

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