Experimental validation in operative conditions of winding thermal model for short-time transient

@article{Boglietti2016ExperimentalVI,
  title={Experimental validation in operative conditions of winding thermal model for short-time transient},
  author={Aldo Boglietti and Marco Cossale and Silvio Vaschetto and Thiago Assis Dutra},
  journal={2016 IEEE Energy Conversion Congress and Exposition (ECCE)},
  year={2016},
  pages={1-6}
}
This paper presents the validation of a first-order winding thermal model in machine operative conditions. The proposed model can be used in motor control strategies for the winding temperature prediction during transient overload or vice versa, for the prediction of the maximum time duration of the overload maintaining the winding temperature within the limit imposed by the class of insulation. The thermal model has been validated using two different electrical machines. The first one is a 10… 
Winding Thermal Model for Short-Time Transient: Experimental Validation in Operative Conditions
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The validation of a first-order winding thermal model in machine operative conditions that can be used in motor control strategies for the winding temperature prediction during transient overload, or vice versa, for the prediction of the maximum time duration of the overload maintaining the windingTemperature within the limit imposed by the class of insulation.
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Development of a Thermal Equivalent Circuit to Quantify the Effect of Thermal Paste on Heat Flow Through a Permanent Magnet Alternator
  • M. Kulan, N. Baker
  • Engineering, Physics
    IEEE Transactions on Industry Applications
  • 2019
This paper describes the thermal modeling of a permanent magnet alternator (PMA). The principal focus is on, to investigate the effect of adding thermal paste into the machine end winding region. A

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