DocumentCode
3427244
Title
Towards a Fault-Tolerant Wireless Sensor Network Using Fault Injection Mechanisms: A Parking Lot Monitoring Case
Author
Karbaschi, G. ; Sailhan, F. ; Rovedakis, S.
fYear
2012
fDate
20-23 Nov. 2012
Firstpage
783
Lastpage
787
Abstract
A Wireless Sensor Network (WSN) requires a high level of robust and fault tolerant sensing and actuating capabilities, specially when the application aims to gather delicate and urgent data with reasonable latency. Hence, verifying the behavior properties under the presence of faults remains an important step in developing an application over a WSN. A comprehensive study on characterization and understanding of all the possible faults is required in order to generate and inject ´any´ known error to the system. In order to ensure appearance of all the faults and possible bugs in the system, conception and developing a fault injector which generates and injects any requested fault to the system is promising. This becomes more important and critical when the fault happens very rarely, while due to Murphy´s law it happens certainly along the network life. Considering that occurrence of faults depends heavily on the specifications of the use case, in this paper we concentrate on a sensor network which aims to detect the presence of vehicles on parking lots. We try to categorize and characterize the faults driven by this system as the first step of developing a fault injector.
Keywords
computerised monitoring; fault tolerance; object detection; traffic engineering computing; wireless sensor networks; Murphy law; WSN; bugs; fault generation; fault injection mechanism; fault injector; fault tolerant; network life; parking monitoring; vehicle detection; wireless sensor network; Circuit faults; Hardware; Libraries; Monitoring; Software; Synchronization; Wireless sensor networks; Fault injection; Monitoring a Parking; Robustness; Wireless Sensor network;
fLanguage
English
Publisher
ieee
Conference_Titel
Green Computing and Communications (GreenCom), 2012 IEEE International Conference on
Conference_Location
Besancon
Print_ISBN
978-1-4673-5146-1
Type
conf
DOI
10.1109/GreenCom.2012.129
Filename
6468409
Link To Document