Monitoring of Power Transmission Lines Through Wireless Sensor Networks in Smart Grid
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-61542-4_15
Reference14 articles.
1. Reed, G.F., Philip, P.A., Barchowsky, A., Lippert, C.J., Sparacino, A.R.: Sample survey of smart grid approaches and technology gap analysis. In: Innovative Smart Grid Technologies Conference Europe (ISGT Europe), IEEE PES 2010, pp. 1–10. IEEE (2010)
2. Ericsson, G.N.: Classification of power systems communications needs and requirements: experiences from case studies at swedish national grid. IEEE Trans. Power Deliv. 17(2), 345–347 (2002)
3. Gungor, V.C., Lambert, F.C.: A survey on communication networks for electric system automation. Comput. Netw. 50(7), 877–897 (2006)
4. Nordman, M.M., Lehtonen, M.: A wireless sensor concept for managing electrical distribution networks. In: Power Systems Conference and Exposition, IEEE PES 2004, pp. 1198–1206. IEEE (2004)
5. Yang, Y., Divan, D., Harley, R.G., Habetler, T.G.: Power line sensornet-a new concept for power grid monitoring. In: Power Engineering Society General Meeting, pp. 1–8. IEEE (2006)
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