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Evaluation of stator core loss of high speed motor by using thermography camera

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In order to design a high-efficiency motor, the iron loss that is generated in the motor should be reduced. The iron loss of the motor is generated in a stator core that is produced with an electrical steel sheet. The iron loss characteristics of the stator core and the electrical steel sheet are agreed due to a building factor. To evaluate the iron loss of the motor, the iron loss of the stator core should be measured more accurately. Thus, we proposed the method of the iron loss evaluation of the stator core by using a stator model core. This stator model core has been applied to the surface mounted permanent magnet (PM) motors without windings. By rotate the permanent magnet rotor, the rotating magnetic field is generated in the stator core like a motor under driving. To evaluate the iron loss of the stator model core, the iron loss of the stator core can be evaluated. Also, the iron loss can be calculated by a temperature gradient. When the temperature gradient is measured by using thermography camera, the iron loss of entire stator core can be evaluated as the iron loss distribution. In this paper, the usefulness of the iron loss evaluation method by using the stator model core is shown by the simulation with FEM and the heat measurement with thermography camera.
Title: Evaluation of stator core loss of high speed motor by using thermography camera
Description:
In order to design a high-efficiency motor, the iron loss that is generated in the motor should be reduced.
The iron loss of the motor is generated in a stator core that is produced with an electrical steel sheet.
The iron loss characteristics of the stator core and the electrical steel sheet are agreed due to a building factor.
To evaluate the iron loss of the motor, the iron loss of the stator core should be measured more accurately.
Thus, we proposed the method of the iron loss evaluation of the stator core by using a stator model core.
This stator model core has been applied to the surface mounted permanent magnet (PM) motors without windings.
By rotate the permanent magnet rotor, the rotating magnetic field is generated in the stator core like a motor under driving.
To evaluate the iron loss of the stator model core, the iron loss of the stator core can be evaluated.
Also, the iron loss can be calculated by a temperature gradient.
When the temperature gradient is measured by using thermography camera, the iron loss of entire stator core can be evaluated as the iron loss distribution.
In this paper, the usefulness of the iron loss evaluation method by using the stator model core is shown by the simulation with FEM and the heat measurement with thermography camera.

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