Selective Dynamic Coded Cooperative Communications for Multi-Hop Underwater Acoustic Sensor Networks
Due to the limitation of acoustic velocity in underwater environments, propagation delay is a horrible problem in multi-hop underwater acoustic sensor networks (UW-ASNs). In this paper, we proposed an improved scheme of dynamic coded cooperation called selective dynamic coded cooperation (S-DCC) for...
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doaj-7fa0e6ca731e419d894fefbd3c71806a2021-03-30T00:07:04ZengIEEEIEEE Access2169-35362019-01-017705527056310.1109/ACCESS.2019.29129178695697Selective Dynamic Coded Cooperative Communications for Multi-Hop Underwater Acoustic Sensor NetworksYougan Chen0https://orcid.org/0000-0001-8345-1226Xiaoting Jin1Lei Wan2Xiaokang Zhang3Xiaomei Xu4Ministry of Education, Key Laboratory of Underwater Acoustic Communication and Marine Information Technology (Xiamen University), Xiamen, ChinaMinistry of Education, Key Laboratory of Underwater Acoustic Communication and Marine Information Technology (Xiamen University), Xiamen, ChinaCollege of Underwater Acoustic Engineering, Harbin Engineering University, Harbin, ChinaMinistry of Education, Key Laboratory of Underwater Acoustic Communication and Marine Information Technology (Xiamen University), Xiamen, ChinaMinistry of Education, Key Laboratory of Underwater Acoustic Communication and Marine Information Technology (Xiamen University), Xiamen, ChinaDue to the limitation of acoustic velocity in underwater environments, propagation delay is a horrible problem in multi-hop underwater acoustic sensor networks (UW-ASNs). In this paper, we proposed an improved scheme of dynamic coded cooperation called selective dynamic coded cooperation (S-DCC) for the multi-hop UW-ASNs, aiming at reducing the end-to-end delay and improving the transmission efficiency. In S-DCC scheme, the cooperative node actively transmits blocks with limited redundancy; yet the receiver only selectively receives those cooperative blocks depending on its own decoding conditions. The S-DCC scheme can utilize the retransmission mechanism adequately to eliminate the waiting time and drastically shorten the overall transmission time, the gain of which increases linearly with the number of hops. Concerning the transmission delay and energy consumption, we evaluated the performances with the different maximum number of retransmissions and different data burst sizes for the proposed S-DCC scheme and other compared schemes. The simulation results showed that the proposed S-DCC scheme could achieve decent outage performance and reduce the end-to-end delay effectively without extra energy consumption compared with other existing schemes, especially for the cases with low transmission signal to noise ratio. Sea test data were also adopted to further verify the conclusions.https://ieeexplore.ieee.org/document/8695697/Energy consumptionmulti-hop networksend-to-end delayunderwater acoustic communications |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yougan Chen Xiaoting Jin Lei Wan Xiaokang Zhang Xiaomei Xu |
spellingShingle |
Yougan Chen Xiaoting Jin Lei Wan Xiaokang Zhang Xiaomei Xu Selective Dynamic Coded Cooperative Communications for Multi-Hop Underwater Acoustic Sensor Networks IEEE Access Energy consumption multi-hop networks end-to-end delay underwater acoustic communications |
author_facet |
Yougan Chen Xiaoting Jin Lei Wan Xiaokang Zhang Xiaomei Xu |
author_sort |
Yougan Chen |
title |
Selective Dynamic Coded Cooperative Communications for Multi-Hop Underwater Acoustic Sensor Networks |
title_short |
Selective Dynamic Coded Cooperative Communications for Multi-Hop Underwater Acoustic Sensor Networks |
title_full |
Selective Dynamic Coded Cooperative Communications for Multi-Hop Underwater Acoustic Sensor Networks |
title_fullStr |
Selective Dynamic Coded Cooperative Communications for Multi-Hop Underwater Acoustic Sensor Networks |
title_full_unstemmed |
Selective Dynamic Coded Cooperative Communications for Multi-Hop Underwater Acoustic Sensor Networks |
title_sort |
selective dynamic coded cooperative communications for multi-hop underwater acoustic sensor networks |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2019-01-01 |
description |
Due to the limitation of acoustic velocity in underwater environments, propagation delay is a horrible problem in multi-hop underwater acoustic sensor networks (UW-ASNs). In this paper, we proposed an improved scheme of dynamic coded cooperation called selective dynamic coded cooperation (S-DCC) for the multi-hop UW-ASNs, aiming at reducing the end-to-end delay and improving the transmission efficiency. In S-DCC scheme, the cooperative node actively transmits blocks with limited redundancy; yet the receiver only selectively receives those cooperative blocks depending on its own decoding conditions. The S-DCC scheme can utilize the retransmission mechanism adequately to eliminate the waiting time and drastically shorten the overall transmission time, the gain of which increases linearly with the number of hops. Concerning the transmission delay and energy consumption, we evaluated the performances with the different maximum number of retransmissions and different data burst sizes for the proposed S-DCC scheme and other compared schemes. The simulation results showed that the proposed S-DCC scheme could achieve decent outage performance and reduce the end-to-end delay effectively without extra energy consumption compared with other existing schemes, especially for the cases with low transmission signal to noise ratio. Sea test data were also adopted to further verify the conclusions. |
topic |
Energy consumption multi-hop networks end-to-end delay underwater acoustic communications |
url |
https://ieeexplore.ieee.org/document/8695697/ |
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