Automatic transmission period setting for intermittent periodic transmission in wireless backhaul

Guangri Jin, Li Gong, Hiroshi Furukawa

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

Intermittent Periodic Transmission (IPT forwarding) has been proposed as an efficient packet relay method for wireless backhaul. In the IPT forwarding, a source node sends packets to a destination node with a certain time interval (IPT duration) so that signal interference between relay nodes that send packets simultaneously are reduced and frequency reuse is realized which brings about the improvement of system throughput. However, optimum IPT duration setting for each node is a difficult problem which is not solved adequately yet. In this paper, we propose a new IPT duration setting protocol which employs some training packets to search the optimum IPT duration for each node. Simulation and experimental results show that the proposed method is not only very effective but also practical for wireless backhaul.

Original languageEnglish
Title of host publicationDigital Information and Communication Technology and Its Applications - International Conference, DICTAP 2011, Proceedings
Pages577-592
Number of pages16
EditionPART 1
DOIs
Publication statusPublished - Jul 12 2011
EventInternational Conference on Digital Information and Communication Technology and Its Applications, DICTAP 2011 - Dijon, France
Duration: Jun 21 2011Jun 23 2011

Publication series

NameCommunications in Computer and Information Science
NumberPART 1
Volume166 CCIS
ISSN (Print)1865-0929

Other

OtherInternational Conference on Digital Information and Communication Technology and Its Applications, DICTAP 2011
CountryFrance
CityDijon
Period6/21/116/23/11

Fingerprint

Signal interference
Throughput

All Science Journal Classification (ASJC) codes

  • Computer Science(all)
  • Mathematics(all)

Cite this

Jin, G., Gong, L., & Furukawa, H. (2011). Automatic transmission period setting for intermittent periodic transmission in wireless backhaul. In Digital Information and Communication Technology and Its Applications - International Conference, DICTAP 2011, Proceedings (PART 1 ed., pp. 577-592). (Communications in Computer and Information Science; Vol. 166 CCIS, No. PART 1). https://doi.org/10.1007/978-3-642-21984-9_48

Automatic transmission period setting for intermittent periodic transmission in wireless backhaul. / Jin, Guangri; Gong, Li; Furukawa, Hiroshi.

Digital Information and Communication Technology and Its Applications - International Conference, DICTAP 2011, Proceedings. PART 1. ed. 2011. p. 577-592 (Communications in Computer and Information Science; Vol. 166 CCIS, No. PART 1).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Jin, G, Gong, L & Furukawa, H 2011, Automatic transmission period setting for intermittent periodic transmission in wireless backhaul. in Digital Information and Communication Technology and Its Applications - International Conference, DICTAP 2011, Proceedings. PART 1 edn, Communications in Computer and Information Science, no. PART 1, vol. 166 CCIS, pp. 577-592, International Conference on Digital Information and Communication Technology and Its Applications, DICTAP 2011, Dijon, France, 6/21/11. https://doi.org/10.1007/978-3-642-21984-9_48
Jin G, Gong L, Furukawa H. Automatic transmission period setting for intermittent periodic transmission in wireless backhaul. In Digital Information and Communication Technology and Its Applications - International Conference, DICTAP 2011, Proceedings. PART 1 ed. 2011. p. 577-592. (Communications in Computer and Information Science; PART 1). https://doi.org/10.1007/978-3-642-21984-9_48
Jin, Guangri ; Gong, Li ; Furukawa, Hiroshi. / Automatic transmission period setting for intermittent periodic transmission in wireless backhaul. Digital Information and Communication Technology and Its Applications - International Conference, DICTAP 2011, Proceedings. PART 1. ed. 2011. pp. 577-592 (Communications in Computer and Information Science; PART 1).
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