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Fault-tolerant implementation of a distributed MLE-based time synchronization protocol for wireless sensor networks

Djenouri, Djamel; Merabtine, Nassima; Mekahlia, Fatma Zohra; Doudou, Messaoud

Authors

Nassima Merabtine

Fatma Zohra Mekahlia

Messaoud Doudou



Abstract

This paper describes the implementation and evaluation of R4Syn protocol on MICAz platform and TinyOS operating system. The contribution is two folds. First, the implementation uses thorough maximum-likelihood estimators (MLE) in the joint offset/skew model, while all similar MLE-based estimators are merely evaluated with theoretical and numerical analysis thus far, and empirical solutions use simple computation estimators, such as offset-only models, or linear regression for skew estimation. Difficulties that has been encountered and overcome are reported in this paper. The second contribution is to consider fault-tolerance, an aspect that has been completely abstracted in previous works. The implementation assures correct behavior despite nodes failure or packet loss, as demonstrated by the experiments. Experimental results also demonstrate microsecond-level precision and long-term validity of the estimators in the joint skew/offset model.

Citation

Djenouri, D., Merabtine, N., Mekahlia, F. Z., & Doudou, M. (2013). Fault-tolerant implementation of a distributed MLE-based time synchronization protocol for wireless sensor networks. https://doi.org/10.1109/wcnc.2013.6555284

Conference Name 2013 IEEE Wireless Communications and Networking Conference (WCNC)
Conference Location Shanghai, Shanghai, China
Start Date Apr 7, 2013
End Date Apr 10, 2013
Publication Date Jul 15, 2013
Deposit Date Mar 3, 2020
Pages 4387-4391
ISBN 9781467359382
DOI https://doi.org/10.1109/wcnc.2013.6555284
Public URL https://uwe-repository.worktribe.com/output/5600393