Open Access

Influence of Permanent Magnet Characteristic Variability on the Wind Generator Operation


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1. Kudrjavtsev, O., & Kilk, A. (2012). Study and verification of a slow speed PM generator with outer rotor for small scale wind turbines. In Proceedings of Electric Power Quality and Supply Reliability Conference (PQ), 11–13 June 2012 (pp. 1–6). Tartu, Estonia: IEEE.Search in Google Scholar

2. Kallaste, A., Belahcen, A., & Vaimann, T. (2015). Effect of PM parameters variability on the operation quantities of a wind generator. In Proceedings of IEEE Workshop on Electrical Machines Design, Control and Diagnosis (WEMDCD), 26–27 March 2015 (pp. 242–247). IEEE.10.1109/WEMDCD.2015.7194536Search in Google Scholar

3. Ruoho, S., Dlala, E., & Arkkio, A. (2007). Comparison of demagnetization models for finite-element analysis of permanent-magnet synchronous machines. IEEE Trans. Magn., 43(11), 3964–3968.10.1109/TMAG.2007.906749Search in Google Scholar

4. Ruoho, S., McFarland, J.D., & Jahns, T.M. (2004). Investigation of the rotor demagnetization characteristics of interior PM synchronous machines during fault conditions. IEEE Trans. Ind. App., 50(4), 2768–2775.Search in Google Scholar

5. Ebrahimi, B.M., & Faiz, J. (2013). Demagnetization fault diagnosis in surface mounted permanent magnet synchronous motors. IEEE Trans. Magn., 49(3), 1185–1192.10.1109/TMAG.2012.2217978Search in Google Scholar

6. Kallaste, A. (2013). Low speed permanent magnet slotless generator development and implementation for windmills. PhD dissertation, Tallinn University of Technology, Estonia.Search in Google Scholar

eISSN:
0868-8257
Language:
English
Publication timeframe:
6 times per year
Journal Subjects:
Physics, Technical and Applied Physics