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Interference range-reduced cooperative multiple access with optimal relay selection for large scale wireless networks

  • Kai Liu
  • , Rui Wang
  • , Caizhao Yue
  • , Feng Liu
  • , Tao Lu*
  • , Zixiang Xiong
  • *Corresponding author for this work
  • Beijing Laboratory for General Aviation Technology
  • Beijing Key Laboratory for Network-based Cooperative Air Traffic Management
  • Beihang University
  • Wuhan Institute of Technology
  • Texas A&M University

Research output: Contribution to journalArticlepeer-review

Abstract

Cooperative communication improves the link throughput of wireless networks through spatial diversity. However, it reduces the frequency reuse of the entire network due to the enlarged link interference range introduced by each helper. In this paper, we propose a cooperative medium access control (MAC) protocol with optimal relay selection (ORS-CMAC) for multihop, multirate large scale networks, which can reduce the interference range and improve the network throughput. Then, we investigate the performance gain achieved by these two competitive factors, i.e., the spatial frequency reuse gain and spatial diversity gain, in large scale wireless networks. The expressions of maximum network throughput for direct transmissions and cooperative transmissions in the whole network are derived as a function of the number of concurrent transmission links, data packet length, and average packet transmission time. Simulation results validate the effectiveness of the theoretical results. The theoretical and simulation results show that the helper can reduce the spatial frequency reuse slightly, and spatial diversity gain can compensate for the decrease of the spatial frequency reuse, thereby improving the network throughput from the viewpoint of the whole network.

Original languageEnglish
Article number2565
JournalSensors
Volume19
Issue number11
DOIs
StatePublished - 1 Jun 2019

Keywords

  • Cooperative MAC protocol
  • Helper selection
  • Large scale wireless networks
  • Medium access control (MAC)
  • Spatial diversity gain
  • Spatial frequency reuse gain

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