2012•Unpublished venueRequires access

Best relaying protocol selection for cooperative networks

Edriss Eisa Babikir Adam, Yu Li, Doudou Samb, Desheng Wang

Open publisher page 2 citations

Abstract

Cooperative communication has been recently proposed in wireless communication systems for exploring the inherent spatial diversity in relay channels. In this work we investigate the performance of selecting best protocol between amplify and forward (AF) and decode and forward (DF) in multiple relay networks. In the selection scheme, the best protocol between AF and DF is selected depending on source-relay links qualities. Particularly we derive the asymptotic closed form expression for the symbol error rate (SER) for the system under studied and show that our scheme maintains full diversity order and is better than fixed protocols. Numerical results are also presented to validate the theoretical analysis.

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What this paper is about

Cooperative communication has been recently proposed in wireless communication systems for exploring the inherent spatial diversity in relay channels. In this work we investigate the performance of selecting best protocol between amplify and forward (AF) and decode and forward (DF) in multiple relay networks. In the selection scheme, the best protocol between AF and DF is selected depending on source-relay links qualities. Particularly we derive the asymptotic closed form expression for the symbol error rate (SER) for the system under studied and show that our scheme maintains full diversity order and is better than fixed protocols. Numerical results are also presented to validate the theoretical analysis.

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Available abstract

Cooperative communication has been recently proposed in wireless communication systems for exploring the inherent spatial diversity in relay channels. In this work we investigate the performance of selecting best protocol between amplify and forward (AF) and decode and forward (DF) in multiple relay networks. In the selection scheme, the best protocol between AF and DF is selected depending on source-relay links qualities. Particularly we derive the asymptotic closed form expression for the symbol error rate (SER) for the system under studied and show that our scheme maintains full diversity order and is better than fixed protocols. Numerical results are also presented to validate the theoretical analysis.

Key concepts: Relay, Cooperative diversity, Computer science, Protocol (science), Selection (genetic algorithm), Computer network, Scheme (mathematics), Antenna diversity

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