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Control of Axial Flux DC Motor with Permanent Magnet Dedicated to Electric Traction

Received: 13 April 2015    Accepted: 21 April 2015    Published: 24 April 2015
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Abstract

In this paper we present a control strategy of a DC motor with permanent magnets ensuring the variation of the speed, the electric braking of electric cars and guaranteeing to reach the maximum speed set at 80 km / h. This control strategy is implanted under the simulation environment Matlab-Simulink. Simulation results are encouraging and open the avenue of research work to optimize the performance of the electric car structure studied.

Published in International Journal of Electrical Components and Energy Conversion (Volume 1, Issue 1)
DOI 10.11648/j.ijecec.20150101.15
Page(s) 44-48
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

DC motor, Axial flux, Control, Modeling, Simulation, Electric cars.

References
[1] Aicha Khlissa, Houcine Marouani, Souhir Tounsi, Systemic Design and Modelling of a Coiled Rotor Synchronous Motor Dedicated to Electric Traction, American Journal of Electrical Power and Energy Systems. Special Issue:Design, Optimization and Control of Electric Vehicles: (DOCEV). Vol. 4, No. 2-1, 2015, pp. 1-7. doi: 10.11648/j.epes.s.2015040201.11.
[2] Souhir Tounsi, Methodology for Electrothermal Characterization of Permanent Magnet Motor and Its Equivalent to Coiled Rotor, American Journal of Electrical Power and Energy Systems. Special Issue:Design, Optimization and Control of Electric Vehicles: (DOCEV). Vol. 4, No. 2-1, 2015, pp. 8-16. doi: 10.11648/j.epes.s.2015040201.12.
[3] Aicha Khlissa, Houcine Marouani, Souhir Tounsi, Trapezoidal Control of a Coiled Synchronous Motor Optimizing Electric Vehicle Consumption, American Journal of Electrical Power and Energy Systems. Special Issue:Design, Optimization and Control of Electric Vehicles: (DOCEV). Vol. 4, No. 2-1, 2015, pp. 17-25. doi: 10.11648/j.epes.s.2015040201.13.
[4] Moez Hadj Kacem, Souhir Tounsi, Rafik Neji, Determination of the Parameters of the Synchronous Motor with Dual Excitation, American Journal of Electrical Power and Energy Systems. Special Issue:Design, Optimization and Control of Electric Vehicles: (DOCEV). Vol. 4, No. 2-1, 2015, pp. 26-32. doi: 10.11648/j.epes.s.2015040201.14.
[5] Souhir Tounsi, Modelling and Control of Electric Vehicle Power Train, American Journal of Electrical Power and Energy Systems. Special Issue:Design, Optimization and Control of Electric Vehicles: (DOCEV). Vol. 4, No. 2-1, 2015, pp. 33-41. doi: 10.11648/j.epes.s.2015040201.15.
[6] Mariem Ben Amor, Souhir Tounsi, Mohamed Salim Bouhlel, Design and Optimization of Axial Flux Brushless DC Motor Dedicated to Electric Traction, American Journal of Electrical Power and Energy Systems. Special Issue:Design, Optimization and Control of Electric Vehicles: (DOCEV). Vol. 4, No. 2-1, 2015, pp. 42-48. doi: 10.11648/j.epes.s.2015040201.16.
[7] Souhir Tounsi, Systemic Design and Optimization Improving Performances of Permanent Magnet Motors, International Journal of Electrical Components and Energy Conversion. Vol. 1, No. 1, 2015, pp. 1-15. doi: 10.11648/j.ijecec.20150101.11.
[8] Ajmia Belgacem, Mariem Ben Amor, Souhir Tounsi. Trapezoidal Control Based on Analytical and Finite Element Identification of Axial Flux Brushless DC Motor Dedicated to Electric Traction. International Journal of Electrical Components and Energy Conversion. Vol. 1, No. 1, 2015, pp. 16-23. doi: 10.11648/j.ijecec.20150101.12.
[9] Mariem Ben Amor, Ajmia Belgacem, Souhir Tounsi. Optimal Design and Control of Electric Vehicles Power Chain with Electromagnetic Switch. International Journal of Electrical Components and Energy Conversion. Vol. 1, No. 1, 2015, pp. 24-35. doi: 10.11648/j.ijecec.20150101.13.
[10] Amal Suilah, Nadia Graja, Amal Boudaya, Souhir Tounsi, Modelling of Synchronous Generation System for Renewable Energy, International Journal of Electrical Components and Energy Conversion. Vol. 1, No. 1, 2015, pp. 36-43. doi: 10.11648/j.ijecec.20150101.14.
Cite This Article
  • APA Style

    Marwa Sellami, Souhir Tounsi. (2015). Control of Axial Flux DC Motor with Permanent Magnet Dedicated to Electric Traction. International Journal of Electrical Components and Energy Conversion, 1(1), 44-48. https://doi.org/10.11648/j.ijecec.20150101.15

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    ACS Style

    Marwa Sellami; Souhir Tounsi. Control of Axial Flux DC Motor with Permanent Magnet Dedicated to Electric Traction. Int. J. Electr. Compon. Energy Convers. 2015, 1(1), 44-48. doi: 10.11648/j.ijecec.20150101.15

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    AMA Style

    Marwa Sellami, Souhir Tounsi. Control of Axial Flux DC Motor with Permanent Magnet Dedicated to Electric Traction. Int J Electr Compon Energy Convers. 2015;1(1):44-48. doi: 10.11648/j.ijecec.20150101.15

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  • @article{10.11648/j.ijecec.20150101.15,
      author = {Marwa Sellami and Souhir Tounsi},
      title = {Control of Axial Flux DC Motor with Permanent Magnet Dedicated to Electric Traction},
      journal = {International Journal of Electrical Components and Energy Conversion},
      volume = {1},
      number = {1},
      pages = {44-48},
      doi = {10.11648/j.ijecec.20150101.15},
      url = {https://doi.org/10.11648/j.ijecec.20150101.15},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ijecec.20150101.15},
      abstract = {In this paper we present a control strategy of a DC motor with permanent magnets ensuring the variation of the speed, the electric braking of electric cars and guaranteeing to reach the maximum speed set at 80 km / h. This control strategy is implanted under the simulation environment Matlab-Simulink. Simulation results are encouraging and open the avenue of research work to optimize the performance of the electric car structure studied.},
     year = {2015}
    }
    

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    T1  - Control of Axial Flux DC Motor with Permanent Magnet Dedicated to Electric Traction
    AU  - Marwa Sellami
    AU  - Souhir Tounsi
    Y1  - 2015/04/24
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    N1  - https://doi.org/10.11648/j.ijecec.20150101.15
    DO  - 10.11648/j.ijecec.20150101.15
    T2  - International Journal of Electrical Components and Energy Conversion
    JF  - International Journal of Electrical Components and Energy Conversion
    JO  - International Journal of Electrical Components and Energy Conversion
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    EP  - 48
    PB  - Science Publishing Group
    SN  - 2469-8059
    UR  - https://doi.org/10.11648/j.ijecec.20150101.15
    AB  - In this paper we present a control strategy of a DC motor with permanent magnets ensuring the variation of the speed, the electric braking of electric cars and guaranteeing to reach the maximum speed set at 80 km / h. This control strategy is implanted under the simulation environment Matlab-Simulink. Simulation results are encouraging and open the avenue of research work to optimize the performance of the electric car structure studied.
    VL  - 1
    IS  - 1
    ER  - 

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Author Information
  • National School of Electronics and Telecommunications of Sfax, Sfax University, SETIT Research Unit, Sfax, Tunisia.

  • National School of Electronics and Telecommunications of Sfax, Sfax University, SETIT Research Unit, Sfax, Tunisia.

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