DocumentCode :
1990264
Title :
Mitigating the impact of asynchronous ACKs on the performance of opportunistic network coding
Author :
Qinglong Liu ; Gang Feng
Author_Institution :
Nat. Key Lab. of Sci. & Technol. on Commun., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
fYear :
2012
fDate :
3-7 Dec. 2012
Firstpage :
5644
Lastpage :
5649
Abstract :
Existing opportunistic network coding architectures relies on pseudobroadcast to deliver a coded packet to multiple receivers in a single transmission. In such situation, there is only one primary receiver who acknowledges the reception by synchronous MAC-layer acknowledgements (ACKs) and the other receivers receive it by overhearing and acknowledge the reception by asynchronous ACKs, which are usually piggybacked in outgoing data packets. This may cause a large amount of unnecessary retransmissions if asynchronous ACKs are dropped due to packet losses or they arrive late. Moreover, a large number of redundant retransmissions in IP layer easily cause congestion losses, especially under heavy traffic and thus compromise the throughput gain brought by network coding. In this paper, we propose a framework of joint optimal rate control and code selection (ORC) to mitigate the impact brought by asynchronous ACKs on opportunistic network coding in lossy wireless networks. The operation of ORC consists of two phases. In the first phase, we try to select a suitable transmission rate for the transmission of a coded packet. We formulate this rate control process as a Finite Horizon Markov Decision Process (FH-MDP). We define a metric, called coded packet transmission efficiency (CPTE), to measure the expected cumulative rewards and search the optimal rate control policy. In the second phase, based on the CPTE for a given coded packet, we propose a code selection policy to optimize the performance of opportunistic network coding. We demonstrate the effectiveness and advantages of the proposed ORC framework by computer simulations.
Keywords :
Markov processes; access protocols; network coding; radio networks; CPTE; FH-MDP; IP layer; ORC framework; asynchronous ACK impact mitigation; code selection policy; coded packet transmission efficiency; computer simulations; congestion losses; finite horizon Markov decision process; heavy traffic; joint optimal rate control-code selection; lossy wireless networks; opportunistic network coding; optimal rate control policy; outgoing data packets; packet losses; primary receiver; pseudobroadcast; synchronous MAC-layer acknowledgements; throughput gain;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Global Communications Conference (GLOBECOM), 2012 IEEE
Conference_Location :
Anaheim, CA
ISSN :
1930-529X
Print_ISBN :
978-1-4673-0920-2
Electronic_ISBN :
1930-529X
Type :
conf
DOI :
10.1109/GLOCOM.2012.6504020
Filename :
6504020
Link To Document :
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