Presentation 2012-12-13
Synchronized Multi-Hop Protocol with Fast Transmission Failure Recovery for IEEE 802.11 Multi-Hop Wireless Network under Large Interference Range
Xinru YAO, Zilu LIANG, Yasushi WAKAHARA,
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Abstract(in English) Multi-hop wireless networks are considered promising for the next-generation communication systems because of their wide applicability to hard-to-wire circumstances, especially in natural disaster recoveries and military operations. However, the throughput of multi-hop wireless networks based on the widely accepted IEEE 802.11 DCF is so low due to inter-flow and intra-flow collisions that further applications of the networks are limited. In our previous paper, a minimal modification of IEEE 802.11 DCF is proposed for improving significantly the throughput of the networks by realizing efficient synchronization among multiple hops. The protocol is named Synchronized Multi-Hop Protocol. In this paper, the proposed protocol SMHP is extended to achieve high throughput in the cases where there are transmission failures and the interference range is much wider than the transmission range. By theoretical analysis and simulation experiments for the comparison with existing protocols, the proposed extension of SMHP is proved to be optimized in terms of the throughput of the network especially in situations with rather high packet transmission error rate and large interference range.
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Keyword(in English) multi-hop wireless network / IEEE 802.11 DCF / Synchronized Multi-Hop Protocol / fast recovery for transmission failure
Paper # NS2012-120,RCS2012-195
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Committee RCS
Conference Date 2012/12/6(1days)
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Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Synchronized Multi-Hop Protocol with Fast Transmission Failure Recovery for IEEE 802.11 Multi-Hop Wireless Network under Large Interference Range
Sub Title (in English)
Keyword(1) multi-hop wireless network
Keyword(2) IEEE 802.11 DCF
Keyword(3) Synchronized Multi-Hop Protocol
Keyword(4) fast recovery for transmission failure
1st Author's Name Xinru YAO
1st Author's Affiliation School of Engineering, University of Tokyo()
2nd Author's Name Zilu LIANG
2nd Author's Affiliation School of Engineering, University of Tokyo
3rd Author's Name Yasushi WAKAHARA
3rd Author's Affiliation School of Engineering, University of Tokyo
Date 2012-12-13
Paper # NS2012-120,RCS2012-195
Volume (vol) vol.112
Number (no) 351
Page pp.pp.-
#Pages 6
Date of Issue