DocumentCode :
1478950
Title :
Dynamic Decode-and-Forward Relaying using Raptor Codes
Author :
Ravanshid, Azad ; Lampe, Lutz ; Huber, Johannes B.
Author_Institution :
Inst. for Inf. Transm., Univ. of Erlangen-Nurnberg, Erlangen, Germany
Volume :
10
Issue :
5
fYear :
2011
fDate :
5/1/2011 12:00:00 AM
Firstpage :
1569
Lastpage :
1581
Abstract :
Dynamic decode-and-forward (DDF) is a version of decode-and-forward relaying in which the duration of the listening phase at relays is not fixed. In this paper, we investigate half-duplex DDF relaying based on rateless codes. The use of rateless codes allows relays to autonomously switch from listening to the source node to transmitting to the destination node. We first revisit different signal combining strategies applied at the destination node, namely energy and information combining known from literature, and propose a new combining method which we refer to as mixed combining. The different combining methods give rise to different achievable rates, i.e., constrained channel capacities, for which we provide analytical expressions. The capacity analysis reveals the conditions under which mixed combining is superior and how it can be optimized. We then consider Raptor codes as a specific implementation of rateless codes and develop a density-evolution approximation to predict the data-rate performance of these codes in DDF relaying. Furthermore, we devise an optimization of the output symbol degree distribution of Raptor codes that is mainly used to benchmark the performance of Raptor codes with a fixed degree distribution. Numerical results for exemplary three-node and four-node relay networks show that the proposed mixed combining provides significant gains in achievable data rate and that Raptor codes with a fixed degree distribution are able to realize these gains and to approach closely the constrained-capacity limits.
Keywords :
codes; decode and forward communication; Raptor codes; constrained channel capacities; data-rate performance; density-evolution approximation; destination node; dynamic decode-and-forward relaying; energy combining; fixed degree distribution; four-node relay networks; half-duplex DDF relaying; information combining; rateless codes; signal combining strategies; source node; three-node relay networks; Collaboration; Decoding; Integrated circuits; Optimized production technology; Protocols; Relays; Strontium; Cooperative communications; Raptor codes; density evolution; dynamic decode-and-forward; rateless codes; relaying;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2011.030411.100834
Filename :
5737896
Link To Document :
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