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Inverse approach for magnetic material identification of a switched reluctance motor

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Abstract
The identification of the magnetic material characteristics for the switched reluctance motor is presented in this study, by solving an inverse problem. The inverse problem aims at identifying the motor magnetic parameters starting from the measured torque profiles. The computational time of the inverse problem is appreciably reduced by implementing a space mapping-based inverse approach. The space mapping technique combines the computationally intensive finite element model with a much faster magnetic network model. The proposed approach is very helpful for the material identification problem on the electrical machine, and the obtained results reveal the success and the reliability of the proposed scheme.
Keywords
inverse problems, switched reluctance motor, SRM, magnetic material identification

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MLA
Mohamed Abouelyazied Abdallh, Ahmed, Guillaume Crevecoeur, Peter Sergeant, et al. “Inverse Approach for Magnetic Material Identification of a Switched Reluctance Motor.” Biennial IEEE Conference on Electromagnetic Field Computation, 13th, Proceedings. Piscataway, NJ, USA: IEEE, 2008. Print.
APA
Mohamed Abouelyazied Abdallh, A., Crevecoeur, G., Sergeant, P., & Dupré, L. (2008). Inverse approach for magnetic material identification of a switched reluctance motor. Biennial IEEE Conference on Electromagnetic Field Computation, 13th, Proceedings. Presented at the 13th Biennial IEEE Conference on Electromagnetic Field Computation (CEFC 2008), Piscataway, NJ, USA: IEEE.
Chicago author-date
Mohamed Abouelyazied Abdallh, Ahmed, Guillaume Crevecoeur, Peter Sergeant, and Luc Dupré. 2008. “Inverse Approach for Magnetic Material Identification of a Switched Reluctance Motor.” In Biennial IEEE Conference on Electromagnetic Field Computation, 13th, Proceedings. Piscataway, NJ, USA: IEEE.
Chicago author-date (all authors)
Mohamed Abouelyazied Abdallh, Ahmed, Guillaume Crevecoeur, Peter Sergeant, and Luc Dupré. 2008. “Inverse Approach for Magnetic Material Identification of a Switched Reluctance Motor.” In Biennial IEEE Conference on Electromagnetic Field Computation, 13th, Proceedings. Piscataway, NJ, USA: IEEE.
Vancouver
1.
Mohamed Abouelyazied Abdallh A, Crevecoeur G, Sergeant P, Dupré L. Inverse approach for magnetic material identification of a switched reluctance motor. Biennial IEEE Conference on Electromagnetic Field Computation, 13th, Proceedings. Piscataway, NJ, USA: IEEE; 2008.
IEEE
[1]
A. Mohamed Abouelyazied Abdallh, G. Crevecoeur, P. Sergeant, and L. Dupré, “Inverse approach for magnetic material identification of a switched reluctance motor,” in Biennial IEEE Conference on Electromagnetic Field Computation, 13th, Proceedings, Athens, Greece, 2008.
@inproceedings{628148,
  abstract     = {The identification of the magnetic material characteristics for the switched reluctance motor is presented in this study, by solving an inverse problem. The inverse problem aims at identifying the motor magnetic parameters starting from the measured torque profiles. The computational time of the inverse problem is appreciably reduced by implementing a space mapping-based inverse approach. The space mapping technique combines the computationally intensive finite element model with a much faster magnetic network model. The proposed approach is very helpful for the material identification problem on the electrical machine, and the obtained results reveal the success and the reliability of the proposed scheme.},
  author       = {Mohamed Abouelyazied Abdallh, Ahmed and Crevecoeur, Guillaume and Sergeant, Peter and Dupré, Luc},
  booktitle    = {Biennial IEEE Conference on Electromagnetic Field Computation, 13th, Proceedings},
  keywords     = {inverse problems,switched reluctance motor,SRM,magnetic material identification},
  language     = {eng},
  location     = {Athens, Greece},
  pages        = {4},
  publisher    = {IEEE},
  title        = {Inverse approach for magnetic material identification of a switched reluctance motor},
  year         = {2008},
}