This paper proposes a reliable data aggregation scheduling that uses caching and re-transmission based on track topology. In the proposed scheme, a node detects packet losses by overhearing messages that includes error indications of the child nodes, from its neighbor nodes. If packet losses are detected, as a backup parent, the node retransmits the lost packet. A retransmission strategy is added into the adaptive timeout scheduling scheme, which adaptively configures both the timeout and the collection period according to the potential level of an event occurrence. The retransmission steps cause an additional delay and power consumption of the sensor nodes, but dramatically increase the data accuracy of the aggregation results. An extensive simulation under various workloads shows that the proposed scheme outperforms other schemes in terms of data accuracy and energy consumption.
Jang Woon BAEK
ETRI
Kee-Koo KWON
ETRI
Su-In LEE
ETRI
Dae-Wha SEO
Kyungpook National University
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Jang Woon BAEK, Kee-Koo KWON, Su-In LEE, Dae-Wha SEO, "Track Topology Based Reliable In-Network Aggregation Scheduling in Wireless Sensor Networks" in IEICE TRANSACTIONS on Communications,
vol. E97-B, no. 11, pp. 2386-2394, November 2014, doi: 10.1587/transcom.E97.B.2386.
Abstract: This paper proposes a reliable data aggregation scheduling that uses caching and re-transmission based on track topology. In the proposed scheme, a node detects packet losses by overhearing messages that includes error indications of the child nodes, from its neighbor nodes. If packet losses are detected, as a backup parent, the node retransmits the lost packet. A retransmission strategy is added into the adaptive timeout scheduling scheme, which adaptively configures both the timeout and the collection period according to the potential level of an event occurrence. The retransmission steps cause an additional delay and power consumption of the sensor nodes, but dramatically increase the data accuracy of the aggregation results. An extensive simulation under various workloads shows that the proposed scheme outperforms other schemes in terms of data accuracy and energy consumption.
URL: https://global.ieice.org/en_transactions/communications/10.1587/transcom.E97.B.2386/_p
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@ARTICLE{e97-b_11_2386,
author={Jang Woon BAEK, Kee-Koo KWON, Su-In LEE, Dae-Wha SEO, },
journal={IEICE TRANSACTIONS on Communications},
title={Track Topology Based Reliable In-Network Aggregation Scheduling in Wireless Sensor Networks},
year={2014},
volume={E97-B},
number={11},
pages={2386-2394},
abstract={This paper proposes a reliable data aggregation scheduling that uses caching and re-transmission based on track topology. In the proposed scheme, a node detects packet losses by overhearing messages that includes error indications of the child nodes, from its neighbor nodes. If packet losses are detected, as a backup parent, the node retransmits the lost packet. A retransmission strategy is added into the adaptive timeout scheduling scheme, which adaptively configures both the timeout and the collection period according to the potential level of an event occurrence. The retransmission steps cause an additional delay and power consumption of the sensor nodes, but dramatically increase the data accuracy of the aggregation results. An extensive simulation under various workloads shows that the proposed scheme outperforms other schemes in terms of data accuracy and energy consumption.},
keywords={},
doi={10.1587/transcom.E97.B.2386},
ISSN={1745-1345},
month={November},}
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TY - JOUR
TI - Track Topology Based Reliable In-Network Aggregation Scheduling in Wireless Sensor Networks
T2 - IEICE TRANSACTIONS on Communications
SP - 2386
EP - 2394
AU - Jang Woon BAEK
AU - Kee-Koo KWON
AU - Su-In LEE
AU - Dae-Wha SEO
PY - 2014
DO - 10.1587/transcom.E97.B.2386
JO - IEICE TRANSACTIONS on Communications
SN - 1745-1345
VL - E97-B
IS - 11
JA - IEICE TRANSACTIONS on Communications
Y1 - November 2014
AB - This paper proposes a reliable data aggregation scheduling that uses caching and re-transmission based on track topology. In the proposed scheme, a node detects packet losses by overhearing messages that includes error indications of the child nodes, from its neighbor nodes. If packet losses are detected, as a backup parent, the node retransmits the lost packet. A retransmission strategy is added into the adaptive timeout scheduling scheme, which adaptively configures both the timeout and the collection period according to the potential level of an event occurrence. The retransmission steps cause an additional delay and power consumption of the sensor nodes, but dramatically increase the data accuracy of the aggregation results. An extensive simulation under various workloads shows that the proposed scheme outperforms other schemes in terms of data accuracy and energy consumption.
ER -