DocumentCode
3586163
Title
WSN implementation of DFD algorithm on SOFREL S550/WAVENIS unit
Author
Saihi, Marwa ; Boussaid, Boumedyen ; Zouinkhi, Ahmed ; Abdelkrim, M. Naceur
Author_Institution
Nat. Sch. of Eng. of Gabes, Gabes Univ., Gabes, Tunisia
fYear
2014
Firstpage
219
Lastpage
224
Abstract
Wireless Sensor Networks (WSN) can experience faults during deployment either due to its hardware malfunctioning or software failure or even harsh environmental factors. This results into presence of anomalies in their time-series collected data. So, these anomalies demand for reliable detection strategies to support in long term and/or in large scale WSN deployments. These data of physical variables are transmitted continuously to a repository for further processing of information as data stream. centralized fault detection based on centralized approach has become an emerging technology for building scalable and energy balanced applications for WSN. In our work, we try to implement the Distributed Fault Detection (DFD) algorithm in a central unit named SOFREL S550 which represent the base station or the sink node and detects the suspicious nodes by exchanging heartbeat messages in active manner. By analyzing the collected heartbeat information, the unit finally identifies failed nodes according to a pre-defined failure detection rule.
Keywords
environmental factors; time series; wireless sensor networks; DFD algorithm; SOFREL S550/WAVENIS unit; WSN; base station; data stream; distributed fault detection; environmental factors; failure detection; hardware malfunctioning; heartbeat messages; sink node; software failure; time-series; wireless sensor networks; Computational modeling; Irrigation; Modems; Monitoring; Silicon; Software; Wireless sensor networks; Centralized approach; Decentralized approach; Distributed Fault Detection; Wireless Sensor Network;
fLanguage
English
Publisher
ieee
Conference_Titel
Sciences and Techniques of Automatic Control and Computer Engineering (STA), 2014 15th International Conference on
Type
conf
DOI
10.1109/STA.2014.7086771
Filename
7086771
Link To Document