References
- Basharat, A., Catbas, N. and Shah, M. (2005), "A framework for intelligent sensor network with video camera for structural health monitoring of bridges", Pervasive Computing and Communications Workshops, PerCom 2005 Workshops, Third IEEE International Conference, March.
- Bello, L., Bakalis, P., Manam, S.J., Eneh, T.I. and Anang, K.A. (2011), "Power control and performance comparison of AODV and DSR ad hoc routing protocols", UKSim 13th International Conference on Modelling and Simulation.
- Chae, M.J., Yoo, H.S., Kim, J.Y. and Cho, M.Y. (2012), "Development of a wireless sensor network system for suspension bridge health monitoring", Automation in Construction, 21, 237-252. https://doi.org/10.1016/j.autcon.2011.06.008
- Chang, Z., Gaydadjiev, G. and Vassiliadis, S. (2005), "Routing protocols for mobile ad hoc networks: Current development and evaluation", IEEE Comput. Soc., 187-194.
- Chatham Maritime House (2010), http://www.cmtrust.co.uk.
- Culler, D. and Hong, W. (2004), "Wireless sensor networks", Communications of the ACM, 47, 30-33. https://doi.org/10.1145/1029496.1029522
- Dwivedi, D., Dubey, S., Verma, A. and Lala, A. (2012), "Energy efficient reactive routing using energy evaluation model with CBR and VBR traffic model", Int. J. Elec. Comput. Sci. Eng., 1(4), 2368-2376.
- Farhey, D. (2006), "Integrated virtual instrumentation and wireless monitoring for infrastructure diagnostics", Struct. Hlth. Monit., 5, 29-43. https://doi.org/10.1177/1475921706057980
- GUOA (2011), "Optimal sensor placement in structural health monitoring (shm) with a field application on arc bridge", University of New Mexico, USA.
- Pirzada, A. A., Portmann, M. and Indulska, J. (2006), "Performance comparison of multi-path aodv and dsr protocols in hybrid mesh networks", Networks, ICON '06. 14th IEEE International Conference, September.
- Kamel, G. (2010), "Energy efficient structural health monitoring of the cutty sark using wireless sensors".
- Kim, J. and Lynch, J.P. (2012), "Experimental analysis of vehicle bridge interaction using a wireless monitoring system and a two stage system identification technique", Mech. Syst. Signal Proc., 28, 3-19. https://doi.org/10.1016/j.ymssp.2011.12.008
- Kim, J.T., Ho, D.D., Nguyen, K.D., Hong, D.S., Shin, S.W., Yun, C.B. and Shinozuka, N. (2013), "System identification of a cable-stayed bridge using vibration responses measured by a wireless sensor network", Smart Struct. Syst., 11(5), 533-553. https://doi.org/10.12989/sss.2013.11.5.533
- Lee, R.G., Chen, K.C., Lai, C.C., Chiang, S.S., Liu, H.S. and Wei, M.S. (2007), "A backup routing with wireless sensor network for bridge monitoring system", Measurement, 40, 55-63. https://doi.org/10.1016/j.measurement.2006.04.002
- Oracle Corporation (2012), Sun Spot LIMITED. http://www.sunspotworld.com.
- PCB Group (2012), http://www.pcb.com.
-
Sun Oracle (2011),
$Sun^{TM}$ SPOT Programmer's Manual, Release v6.0. Sun Labs, November. http://www.sunspotworld.com/docs/Yellow/SunSPOT-Programmers-Manual.pdf. - Walker, R. (2010), "Issues current UK bridges", Seminar on Assessment and Maintenance of Concrete Highway Bridges, UK, April.
- Whelan, M.J., Gangone, M.V. and Janoyan, K.D. (2009), "Highway bridge assessment using an adaptive real-time wireless sensor network", Sensors J., IEEE, 9, 1405-1413. https://doi.org/10.1109/JSEN.2009.2026546
- Zhu, Z., German, S. and Brilakis, I. (2010), "Detection of large-scale concrete columns for automated bridge inspection", Automat. Constr., 19, 1047-1055. https://doi.org/10.1016/j.autcon.2010.07.016
Cited by
- Routing Topologies of Wireless Sensor Networks for Health Monitoring of a Cultural Heritage Site vol.16, pp.12, 2016, https://doi.org/10.3390/s16101732