D-MG Tradeoff and Optimal Codes for a Class of AF and DF Cooperative Communication Protocols


Autoria(s): Elia, Petros E; Vinodh, K; Anand, M; Kumar, P Vijay
Data(s)

01/07/2009

Resumo

Cooperative relay communication in a fading channel environment under the orthogonal amplify-and-forward (OAF), nonorthogonal and orthogonal selection decode-and-forward (NSDF and OSDF) protocols is considered here. The diversity-multiplexing gain tradeoff (DMT) of the three protocols is determined and DMT-optimal distributed space-time (ST) code constructions are provided. The codes constructed are sphere decodable and in some instances incur minimum possible delay. Included in our results is the perhaps surprising finding that the orthogonal and the nonorthogonal amplify-and-forward (NAF) protocols have identical DMT when the time durations of the broadcast and cooperative phases are optimally chosen to suit the respective protocol. Moreover our code construction for the OAF protocol incurs less delay. Two variants of the NSDF protocol are considered: fixed-NSDF and variable-NSDF protocol. In the variable-NSDF protocol, the fraction of time occupied by the broadcast phase is allowed to vary with multiplexing gain. The variable-NSDF protocol is shown to improve on the DMT of the best previously known static protocol when the number of relays is greater than two. Also included is a DMT optimal code construction for the NAF protocol.

Formato

application/pdf

Identificador

http://eprints.iisc.ernet.in/21476/1/8fulltext.pdf

Elia, Petros E and Vinodh, K and Anand, M and Kumar, P Vijay (2009) D-MG Tradeoff and Optimal Codes for a Class of AF and DF Cooperative Communication Protocols. In: IEEE International Symposium on Information Theory, JUL 2009, Nice,FRANCE, pp. 3161-3185.

Publicador

IEEE

Relação

http://eprints.iisc.ernet.in/21476/

Palavras-Chave #Electrical Communication Engineering
Tipo

Conference Paper

PeerReviewed