DocumentCode :
1525924
Title :
DMT Optimal Cooperative Protocols with Destination-Based Selection of the Best Relay
Author :
Escrig, Benoît
Author_Institution :
Signal & Commun. Team, IRIT Lab., Toulouse, France
Volume :
10
Issue :
7
fYear :
2011
fDate :
7/1/2011 12:00:00 AM
Firstpage :
2218
Lastpage :
2227
Abstract :
We design a cooperative protocol in the context of wireless mesh networks in order to increase the reliability of wireless links. Destination terminals ask for cooperation when they fail in decoding data frames transmitted by source terminals. In that case, each destination terminal D calls a specific relay terminal B with a signaling frame to help its transmission with source terminal S. To select appropriate relays, destination terminals maintain tables of relay terminals, one for each possible source address. These tables are constituted by passively overhearing ongoing transmissions. Hence, when cooperation is needed between S and D, and when a relay B is found by terminal D in the relay table associated with terminal S, the destination terminal sends a negative acknowledgment frame that contains the address of B. When the best relay B has successfully decoded the source message, it sends a copy of the data frame to D using a selective decode-and-forward transmission scheme. The on-demand approach allows maximization of the spatial multiplexing gain and the cooperation of the best relay allows maximization of the spatial diversity order. Hence, the proposed protocol achieves optimal diversity-multiplexing trade-off performance. Moreover, this performance is achieved through a collision-free selection process.
Keywords :
cooperative communication; decode and forward communication; diversity reception; protocols; space division multiplexing; telecommunication network reliability; wireless mesh networks; DMT optimal cooperative protocols; collision-free selection process; destination terminals; destination-based selection; on-demand approach; optimal diversity-multiplexing trade-off performance; relay terminals; selective decode-and-forward transmission; spatial diversity order; spatial multiplexing; wireless link reliability; wireless mesh networks; Fading; Media Access Protocol; Multiplexing; Receivers; Relays; Wireless communication; Cooperative communications; diversity multiplexing trade-off (DMT); multiple access control (MAC) protocols;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2011.051311.101001
Filename :
5773456
Link To Document :
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