A PRACTICAL METHOD OF FAULT DETECTION FOR MICRO DC MOTORS ON THE PRODUCTION LINE

Zhiping Xie, Jianfeng Hong , Wei Wu, and Wenxiang Chen

References

  1. [1] B.G. Park, K.J. Lee, R.Y. Kim, and T.S. Kim, Simple fault diagnosis based on operating characteristic of brushless direct-current motor drives, IEEE Transactions on Industrial Electronics, 58(5), 2011, 1586–1593.
  2. [2] M.R. Mehrjou, N. Mariun, M.H. Marhaban, and N. Misron,Rotor fault condition monitoring techniques for squirrel-cage induction machine—A review, Mechanical Systems and Signal Processing, 25(8), 2011, 2827–2848.
  3. [3] Y. Gritli, L. Zarri, C. Rossi, et al., Advanced diagnosis of electrical faults in wound-rotor induction machines, IEEE Transactions on Industrial Electronics, 60(9), 4012–4024.
  4. [4] X.Q. Liu, H.Y. Zhang, J. Liu, and J. Yang, Fault detection and diagnosis of permanent-magnet DC motor based on parameter estimation and neural network, IEEE Transactions on Industrial Electronics, 47(5), 2000, 1021–1030.
  5. [5] A. Watanabe, S. Yuta, and A. Ohya, A new method for efficient drive and current control of small-sized brushless DC motor: Experiments and its evaluation, Proc. IECON, Glendale, CA, 2010, 735–741.
  6. [6] M.A. Awadallah, M.M. Morcos, S. Gopalakrishnan, and T.W. Nehl, Detection of stator short circuits in VSI-fed brushless DC motors using wavelet transform, IEEE Transactions on Energy Conversion, 21(1), 2006, 1–8.
  7. [7] S. Nandi, H.A. Toliyat, and X.D. Li, Condition monitoring and fault diagnosis of electrical motors—A review, IEEE Transactions on Energy Conversion, 20(4), 2005, 719–729.
  8. [8] M.A. Awadallah and M.M. Morcos, Adaptive-fuzzy-basedstator-winding fault diagnosis of PM brushless DC motordrive by monitoring supply current, IEEE Power EngineeringReview, 22(12), 2002, 46–49.
  9. [9] M. Hajiaghajani, H.A. Toliyat, and I.M.S. Panahi, Advanced fault diagnosis of a DC motor, IEEE Transactions on Energy Conversion, 19(1), 2004, 60–65.
  10. [10] M.A. Awadallah and M.M. Morcos, Diagnosis of stator short circuits in brushless DC motors by monitoring phase voltages, IEEE Transactions on Energy Conversion, 20(1), 2005, 246–247.
  11. [11] P. Dobra, M. Trusca, I.V. Sita, et al., Model based approach in fault detection and diagnosis for DC motor, Proc. IEEE SDEMPED, Italy, CA, 2011, 229–233.
  12. [12] M.S.Z. Abidin, R. Yusof, M. Kahlid, and S.M. Amin, Application of a model-based fault detection and diagnosis using parameter estimation and fuzzy inference to a DC-servomotor, Proc. IEEE SIC, Canada, CA, 2002, 783–788.
  13. [13] O. Moseler and R. Isermann, Application of model-based fault detection to a brushless DC motor, IEEE Transactions on Industrial Electronics, 47(5), 2000, 1015–1020.
  14. [14] L.J. de Miguel and L.F. Bl´azquez, Fuzzy logic-based decision-making for fault diagnosis in a DC motor, Engineering Applications of Artificial Intelligence, 18(4), 2005, 423–450.
  15. [15] J.F. Chen, Permanent Magnet Motor. (Beijing: China Machine Press, 1983).
  16. [16] Z.S. Liang, J.X. Deng, and W.Q. Yang, The Technology of Permanent Magnet Brushless DC Motor. (Beijing: ChinaMachine Press, 2010).

Important Links:

Go Back