PhotonIcs and Electromagnetics Research Symposium,
also known as Progress In Electromagnetics Research Symposium
PIERS Proceedings
Published: 2015-07-09
A High Survivability Mesh Topology FBG Based Optical Sensing System with SDN Controlling
By
Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)2675-2679
Abstract
A FBG based optical sensing system with mesh topology is first demonstrated with SDN controlling. The design of FBG sensing sets and SDN-controlled remote node provides large sensing signal routing freedom and network survivability.
Citation
Kai-Ming Feng, Chung-Yu Wu, Jhih-Heng Yan, Wei-Cheng Chen, and You-Wei Chen, "A High Survivability Mesh Topology FBG Based Optical Sensing System with SDN Controlling," Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)2675-2679
References

1. Fiber Sensing Innovations, Yokogawa, 2008.        Google Scholar

2. Minardo, A., G. Porcaro, D. Giannetta, R. Bernini, and L. Zeni, "Real-time monitoring of railway traffic using slope-assisted Brillouin distributed sensors," Applied Optics, Vol. 52, No. 16, 3770-3776, 2013.
doi:10.1364/ao.52.003770        Google Scholar

3. Grillet, A., D. Kinet, J. Witt, M. Schukar, and K. Krebber, "Optical fiber sensors embedded into medical textiles for healthcare monitoring," IEEE Sensors Journal, Vol. 8, No. 7, 1215-1222, 2008.
doi:10.1109/jsen.2008.926518        Google Scholar

4. Lopez, O., K. Schires, P. Urquhart, N. Gueyne, and B. Duhamel, "Optical fiber bus protection network to multiplex sensors: Amplification by remotely pumped EDFAs," IEEE Transactionson Instrumentation and Measurement, Vol. 58, No. 9, 2945-2951, 2009.
doi:10.1109/tim.2009.2016786        Google Scholar

5. Kuo, S. T., P. C. Peng, J. W. Sun, and M. S. Kao, "A delta-star-based multipoint fiber Bragg grating sensor network," IEEE Sensors Journal, Vol. 11, No. 4, 875-881, 2011.
doi:10.1109/jsen.2010.2076278        Google Scholar

6. Peng, P. C., J. B. Wang, and K. Y. Huang, "Reliable fiber sensor system with star-ring-bus architecture," Sensors, Vol. 10, No. 5, 4194-4205, 2010.
doi:10.3390/s100504194        Google Scholar

7. Wu, C. Y., K. M. Feng, P. C. Peng, and C. Y. Lin, "Three-dimensional mesh-based multipoint sensing system with self-healing functionality," IEEE Photonics Technology Letters, Vol. 22, No. 8, 565-567, 2010.
doi:10.1109/lpt.2010.2042709        Google Scholar

8. Channegowda, M., R. Nejabati, and D. Simeonidou, "Software defined optical networks technology and infrastructure: Enabling software-defined optical network operations," IEEE/OSAJournal of Optical Communications and Networking, Vol. 5, No. 10, A274-A282, 2013.        Google Scholar

9. Sano, Y. and T. Yoshino, "Fast optical wavelength interrogator employing arrayed waveguide grating for distributed fiber Bragg grating sensors," IEEE/OSA Journal of Lightwave Technology, Vol. 21, No. 1, 132-139, 2003.
doi:10.1109/jlt.2003.808620        Google Scholar

10. Righini, G. C., A. Tajani, and A. Cutolo, An Introduction to Optoelectronic Sensors, World Scientific Publisher, Singapore, 2009.        Google Scholar

11. Dijkstra, E. W., "A note on two problems in connexion with graphs," Numerische Mathematik, Vol. 1, No. 1, 269-271, 1959.
doi:10.1007/bf01386390        Google Scholar

12. Oyman, E. I. and C. Ersoy, "Multiple sink network design problem in large scale wireless sensor networks," IEEE International Conference on Communications, 3663-3667, Paris, France, Jun. 2004.
doi:10.1109/icc.2004.1313226        Google Scholar