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The investigation of induction motors under abnormal condition

Year 2013, Volume: 3 Issue: 4, 150 - 158, 23.07.2016

Abstract

This paper aims to present the negative effects of the unbalanced sinusoidal voltage on the operating of induction motors; this voltage quality anomaly could cause serious problems such as highly unbalanced currents on the stator, mechanical oscillations and interference with control electronics. In this research the detection of this unhealthy situation of the motors has been investigated; using firstly, the stator currents data patterns recognition, as a preliminary diagnosis. Secondly, the focus on the second harmonic of the supply frequency in the torque spectrum signal has shown its effectiveness as a complementary indicator of voltage unbalance. The steady-state of the induction motor and the several unbalanced voltage systems presented, were done by a simulation using the well-known Matlab

References

  • Cakır Abdulkadir, Hakan Calıs, Ecir U. Kucuksille. (2009). Data mining approach for supply unbalance detection in induction motor, Expert Systems with Applications, vol. 36 (pp.11808– 11813).
  • Cruz Sergio .M. A, A. J. Marques Cardoso. (2001). Stator winding fault diagnosis in three-phase synchronous and asynchronous motors by the extended parks vector approach, IEEE transaction on industrial application, vol. 37 n. 5 (pp. 1227-1233).
  • Donolo Pablo , Guillermo Bossio, Cristian De Angelo. (2011). analysis of voltage unbalance effects on induction motors with open and closed slots, Energy Conversion and Management, vol. 52 (pp. 2024–2030).
  • Khoobroo .A, M. Krishnamurthy. M, B. Fahimi, Wei Jen Lee. (2008). Effects of system harmonics and unbalanced voltages on electromagnetic performance of induction motors, the 34th Annual Conference of IEEE Industrial Electronics (pp.1173 – 1178).
  • Lee Ching-Yin, Bin-Kwie Chen, Wei-Jen Lee, Yen-Feng Hsu. (1998). Effects of various unbalanced voltages on the operation performance of an induction motor under the same voltage unbalance factor condition, Electric Power Systems Research, vol. 47 (pp.153–163).
  • Martins João .F, Vitor F. Pires, Tito Amaral. (2011). Induction motor fault detection and diagnosis using a current state space pattern recognition, Pattern Recognition Letters, vol. 32 (pp. 321–328).
  • Mirabbasi .D, G. Seifossadat, M. Heidari.(2009). Effect of unbalanced voltage on operation of induction motors and its detection, IEEE international conference of Electrical and Electronics Engineering Conference Publications (pp.189 – 192).
  • Morsia .W.G, M.E. El-Hawary. (2011). On the application of wavelet transform for symmetrical components computations in the presence of stationary and non-stationary power quality disturbances, Electric Power Systems Research, vol. 81( pp.1373–1380).
  • Nejjari Hamid, Mohamed El Hachemi Benbouzid. (2000). Monitoring and Diagnosis of Induction Motors Electrical Faults Using a Current Park’s Vector Pattern Learning Approach, IEEE Transactions on industry applications, vol. 36 n. 3 (pp. 730–735).
  • Pires Fernao .V, J.F. Martins, A.j. Pires. (2010). Eigenvector/eigenvalue analysis of a 3D current referential fault detection and diagnosis of an induction motor, Energy Conversion and Management, vol. 51 (pp. 901–907).
  • Samsi Rohan, Asok Ray, Jeffrey Mayer. (2009). Early detection of stator voltage imbalance in three-phase induction motors, Electric Power Systems Research, vol. 79 (pp. 239–245)
Year 2013, Volume: 3 Issue: 4, 150 - 158, 23.07.2016

Abstract

References

  • Cakır Abdulkadir, Hakan Calıs, Ecir U. Kucuksille. (2009). Data mining approach for supply unbalance detection in induction motor, Expert Systems with Applications, vol. 36 (pp.11808– 11813).
  • Cruz Sergio .M. A, A. J. Marques Cardoso. (2001). Stator winding fault diagnosis in three-phase synchronous and asynchronous motors by the extended parks vector approach, IEEE transaction on industrial application, vol. 37 n. 5 (pp. 1227-1233).
  • Donolo Pablo , Guillermo Bossio, Cristian De Angelo. (2011). analysis of voltage unbalance effects on induction motors with open and closed slots, Energy Conversion and Management, vol. 52 (pp. 2024–2030).
  • Khoobroo .A, M. Krishnamurthy. M, B. Fahimi, Wei Jen Lee. (2008). Effects of system harmonics and unbalanced voltages on electromagnetic performance of induction motors, the 34th Annual Conference of IEEE Industrial Electronics (pp.1173 – 1178).
  • Lee Ching-Yin, Bin-Kwie Chen, Wei-Jen Lee, Yen-Feng Hsu. (1998). Effects of various unbalanced voltages on the operation performance of an induction motor under the same voltage unbalance factor condition, Electric Power Systems Research, vol. 47 (pp.153–163).
  • Martins João .F, Vitor F. Pires, Tito Amaral. (2011). Induction motor fault detection and diagnosis using a current state space pattern recognition, Pattern Recognition Letters, vol. 32 (pp. 321–328).
  • Mirabbasi .D, G. Seifossadat, M. Heidari.(2009). Effect of unbalanced voltage on operation of induction motors and its detection, IEEE international conference of Electrical and Electronics Engineering Conference Publications (pp.189 – 192).
  • Morsia .W.G, M.E. El-Hawary. (2011). On the application of wavelet transform for symmetrical components computations in the presence of stationary and non-stationary power quality disturbances, Electric Power Systems Research, vol. 81( pp.1373–1380).
  • Nejjari Hamid, Mohamed El Hachemi Benbouzid. (2000). Monitoring and Diagnosis of Induction Motors Electrical Faults Using a Current Park’s Vector Pattern Learning Approach, IEEE Transactions on industry applications, vol. 36 n. 3 (pp. 730–735).
  • Pires Fernao .V, J.F. Martins, A.j. Pires. (2010). Eigenvector/eigenvalue analysis of a 3D current referential fault detection and diagnosis of an induction motor, Energy Conversion and Management, vol. 51 (pp. 901–907).
  • Samsi Rohan, Asok Ray, Jeffrey Mayer. (2009). Early detection of stator voltage imbalance in three-phase induction motors, Electric Power Systems Research, vol. 79 (pp. 239–245)
There are 11 citations in total.

Details

Other ID JA56JN84UB
Journal Section Articles
Authors

Benamira Nadir This is me

Rachedi Mohamed Faouzi This is me

Bouraiou Ahmed This is me

Publication Date July 23, 2016
Published in Issue Year 2013 Volume: 3 Issue: 4

Cite

APA Nadir, B., Faouzi, R. M., & Ahmed, B. (2016). The investigation of induction motors under abnormal condition. TOJSAT, 3(4), 150-158.
AMA Nadir B, Faouzi RM, Ahmed B. The investigation of induction motors under abnormal condition. TOJSAT. July 2016;3(4):150-158.
Chicago Nadir, Benamira, Rachedi Mohamed Faouzi, and Bouraiou Ahmed. “The Investigation of Induction Motors under Abnormal Condition”. TOJSAT 3, no. 4 (July 2016): 150-58.
EndNote Nadir B, Faouzi RM, Ahmed B (July 1, 2016) The investigation of induction motors under abnormal condition. TOJSAT 3 4 150–158.
IEEE B. Nadir, R. M. Faouzi, and B. Ahmed, “The investigation of induction motors under abnormal condition”, TOJSAT, vol. 3, no. 4, pp. 150–158, 2016.
ISNAD Nadir, Benamira et al. “The Investigation of Induction Motors under Abnormal Condition”. TOJSAT 3/4 (July 2016), 150-158.
JAMA Nadir B, Faouzi RM, Ahmed B. The investigation of induction motors under abnormal condition. TOJSAT. 2016;3:150–158.
MLA Nadir, Benamira et al. “The Investigation of Induction Motors under Abnormal Condition”. TOJSAT, vol. 3, no. 4, 2016, pp. 150-8.
Vancouver Nadir B, Faouzi RM, Ahmed B. The investigation of induction motors under abnormal condition. TOJSAT. 2016;3(4):150-8.