Throughput and Delay Analysis for Coded ARQ

© 2019 IFIP. We propose a Coded selective-repeat ARQ protocol with cumulative feedback, by building on the uncoded baseline scheme for ARQ, developed by Ausavapattanakun and Nosratinia. Our method leverages discrete-time queuing and coding theory to analyze the performance of the proposed data trans...

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Format: Article
Language:English
Published: Institute of Electrical and Electronics Engineers (IEEE), 2021-11-08T16:11:49Z.
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LEADER 01417 am a22001453u 4500
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042 |a dc 
245 0 0 |a Throughput and Delay Analysis for Coded ARQ 
260 |b Institute of Electrical and Electronics Engineers (IEEE),   |c 2021-11-08T16:11:49Z. 
856 |z Get fulltext  |u https://hdl.handle.net/1721.1/137697 
520 |a © 2019 IFIP. We propose a Coded selective-repeat ARQ protocol with cumulative feedback, by building on the uncoded baseline scheme for ARQ, developed by Ausavapattanakun and Nosratinia. Our method leverages discrete-time queuing and coding theory to analyze the performance of the proposed data transmission method. We incorporate forward error-correction (FEC) to reduce in-order delivery delay, and exploit a matrix signal-flow graph approach to analyze the throughput and delay. We demonstrate and contrast the performance of the Coded ARQ protocol with that of the uncoded ARQ scheme, with minimum coding, i.e., with a sliding window of size 2. Coded ARQ can provide gains up to about 40% in terms of throughput. It also provides delay guarantees, and is robust to various challenges such as imperfect and delayed feedback, burst erasures, and round-trip time fluctuations. 
546 |a en 
655 7 |a Article 
773 |t 10.23919/WIOPT47501.2019.9144112 
773 |t Proceedings - 17th International Symposium on Modeling and Optimization in Mobile, Ad Hoc, and Wireless Networks, WiOpt 2019