DocumentCode :
1504413
Title :
A Mobile Host Approach for Wireless Powering and Interrogation of Structural Health Monitoring Sensor Networks
Author :
Mascareñas, David ; Flynn, Eric ; Farrar, Charles ; Park, Gyuhae ; Todd, Michael
Author_Institution :
Sullivan Int. Group, SAIC, San Diego, CA, USA
Volume :
9
Issue :
12
fYear :
2009
Firstpage :
1719
Lastpage :
1726
Abstract :
Wireless sensor networks (WSNs) for structural health monitoring (SHM) applications can provide the data collection necessary for rapid structural assessment after an event such as a natural disaster puts the reliability of civil infrastructure in question. Technical challenges affecting deployment of such a network include ensuring power is maintained at the sensor nodes, reducing installation and maintenance costs, and automating the collection and analysis of data provided by a wireless sensor network. In this work, a new "mobile host" WSN paradigm is presented. This architecture utilizes nodes that are deployed without resident power. The associated sensors operate on a mechanical memory principle. A mobile host, such as a robot or unmanned aerial vehicle, is used on an as-needed basis to charge the node by wireless power delivery and subsequently retrieve the data by wireless interrogation. The mobile host may be guided in turn to any deployed node that requires interrogation. The contribution of this work is the first field demonstration of a mobile host wireless sensor network. The sensor node, referred to as THINNER, capable of collecting data wirelessly in the absence of electrical power was developed. A peak displacement sensor capable of interfacing with the THINNER sensor node was also designed and tested. A wireless energy delivery package capable of being carried by an airborne mobile host was developed. Finally, the system engineering required to implement the overall sensor network was carried out. The field demonstration took place on an out-of-service, full-scale bridge near Truth-or-Consequences, NM.
Keywords :
bridges (structures); condition monitoring; data analysis; displacement measurement; mobile communication; reliability; structural engineering; wireless sensor networks; THINNER; WSN; Wireless sensor networks; airborne mobile host; civil infrastructure reliability; data analysis; data collection; displacement sensor; full-scale bridge; mechanical memory principle; mobile host approach; structural assessment; structural health monitoring sensor networks; wireless energy delivery package; wireless powering; Costs; Data analysis; Maintenance; Mechanical sensors; Mobile robots; Monitoring; Robot sensing systems; Robotics and automation; Unmanned aerial vehicles; Wireless sensor networks; Energy harvesting; helicopter; mobile host; radio frequency identification (RFID); robot; sensor network; wireless energy delivery;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2009.2030706
Filename :
5290389
Link To Document :
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