DocumentCode :
3608706
Title :
Multipacket Hybrid ARQ: Closing Gap to the Ergodic Capacity
Author :
Jabi, Mohammed ; El Hamss, Aata ; Szczecinski, Leszek ; Piantanida, Pablo
Author_Institution :
INRS, Univ. of Quebec, Montréal, QC, Canada
Volume :
63
Issue :
12
fYear :
2015
Firstpage :
5191
Lastpage :
5205
Abstract :
In this work, we consider incremental redundancy (IR) hybrid automatic repeat request (HARQ), where the transmission rounds are carried over independent block-fading channels. We analyze the multipacket HARQ, where the transmitter allows two different packets to share the same channel block; this stands in contrast with the conventional HARQ, where each packet occupies the entire block. We then optimally assign resources within the block to each packet and in each transmission round. We study superposition coding and time-sharing encoding strategies, and we optimize their parameters to maximize the throughput. Besides the conventional, one-bit (ACK/NACK) signaling we also consider a multibit feedback. We formulate our problem as a Markov decision process (MDP), where the decisions concerning the encoding strategies and their parameters are taken using additional information obtained from the receiver via feedback channel. In the case of the one-bit (ACK/NACK) signaling, the partial state information Markov decision process (PSI-MDP) framework is used to obtain the optimal policies. Numerical examples obtained in a Rayleigh-fading channel indicate that, the proposed multipacket HARQ outperforms the conventional one, by more than 5 dB for high-spectral efficiencies.
Keywords :
Markov processes; Rayleigh channels; automatic repeat request; channel capacity; channel coding; radio receivers; radio transmitters; redundancy; signalling protocols; MDP; Markov decision process; Rayleigh-fading channel; ergodic capacity; incremental redundancy hybrid automatic repeat request; independent block-fading channel; multibit feedback; multipacket hybrid ARQ; one-bit signaling; radio receiver; radio transmitter; superposition coding; time-sharing encoding; Decoding; Encoding; Radiation detectors; Receivers; Throughput; Transmitters; Block Fading Channels; Block-fading channels; Hybrid Automatic Repeat reQuest; Markov Decision Process; Markov decision process; Partial State Information; Superposition Coding; Time Sharing; hybrid automatic repeat request; partial state information; superposition coding; time sharing;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2015.2493138
Filename :
7302544
Link To Document :
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