Skip to main navigation Skip to search Skip to main content

Exploiting cooperative relays in MIMO ad hoc networks

  • Motorola

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

Abstract

With the popularity of wireless devices and the increase of computing and storage resources, there are increasing interests in supporting mobile computing techniques. Particularly, ad hoc networks can potentially connect different wireless devices to enable more powerful wireless applications and mobile computing capabilities. To meet the ever-increasing communication need, it is important to improve the network throughput while guaranteeing transmission reliability. Multiple- input-multiple-output (MIMO) technology can provide significantly higher data rate in ad hoc networks where nodes are equipped with multi-antenna arrays. Although MIMO technique itself can support diversity transmission when channel condition degrades, the use of diversity transmission often compromises the multiplexing gain and is also not enough to deal with extremely weak channel. Instead, in this work, we exploit the use of cooperative relay transmission (which is often used in a single antenna environment to improve reliability) in a MIMO-based ad hoc network to cope with harsh channel condition. We design both centralized and distributed scheduling algorithms to support adaptive use of cooperative relay transmission when the direct transmission cannot be successfully performed. Our algorithm effectively exploits the cooperative multiplexing gain and cooperative diversity gain to achieve higher data rate and higher reliability under various channel conditions. Our scheduling scheme can efficiently invoke relay transmission without introducing significant signalling overhead as conventional relay schemes, and seamlessly integrate relay transmission with multiplexed MIMO transmission. We also design a MAC protocol to implement the distributed algorithm. Our performance results demonstrate that the use of cooperative relay in a MIMO framework could bring in a significant throughput improvement in all the scenarios studied, with the variation of node density, link failure ratio, packetarrival rate and retransmission threshold.

Original languageEnglish
Title of host publicationDynamic Ad Hoc Networks
PublisherInstitution of Engineering and Technology
Pages141-170
Number of pages30
ISBN (Electronic)9781849196482
ISBN (Print)9781849196475
DOIs
StatePublished - Jan 1 2013

Keywords

  • Access protocols
  • Ad hoc networks
  • Antenna arrays
  • Centralized scheduling algorithms
  • Cooperative relay transmission
  • Direct transmission
  • Distributed algorithm
  • Distributed scheduling algorithms
  • Failure ratio
  • Harsh channel condition
  • MAC protocol
  • MIMO ad hoc networks
  • MIMO communication
  • MIMO technique
  • MIMO technology
  • Mobile computing
  • Mobile computing techniques
  • Multiantenna arrays
  • Multiple-input-multiple-output technology
  • Multiplexing gain
  • Node density
  • Packet arrival rate
  • Powerful wireless applications
  • Relay networks (telecommunication)
  • Relay transmission
  • Retransmission threshold
  • Single antenna environment
  • Storage resources
  • Telecommunication network reliability
  • Transmission reliability
  • Wireless channels
  • Wireless devices

Fingerprint

Dive into the research topics of 'Exploiting cooperative relays in MIMO ad hoc networks'. Together they form a unique fingerprint.

Cite this