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FEA-based Torque Ripple and Noise Reduction of DC Motor for Automotive Air-Conditioning

유한요소 해석 기반 자동차 공조용 DC모터 토크 리플과 소음 저감에 관한 연구

  • Hwang, Myeonghwan (Automative Components R&D Group, Korea Industrial Technology) ;
  • Kim, Donghyeon (Automative Components R&D Group, Korea Industrial Technology) ;
  • Yang, Seungjin (Automative Components R&D Group, Korea Industrial Technology) ;
  • Cha, Hyunrok (Automative Components R&D Group, Korea Industrial Technology) ;
  • Han, Jongho (Automative Components R&D Group, Korea Industrial Technology)
  • Received : 2017.10.31
  • Accepted : 2017.11.18
  • Published : 2017.12.01

Abstract

This paper discusses methods for the torque ripple and noise reduction of DC motors for automotive air-conditioning based on electromagnetic field analysis. The target of the motor is a blower motor, and to reduce cogging torque and the torque ripple, the optimum model was selected by deforming the brush or commutator shape. In addition, to reduce the cogging torque, the model design was carried out by applying the skew method and the magnetization method of a magnet to the rotor. For optimization, the shape, material, and drive system of the motor were selected using an electromagnetic field as the analysis tool, and the method of reducing the cogging torque was applied to 4-pole, 12- and 13-slot motors considering the mechanical part. Lastly, this paper confirmed thatthemethod, which proposed how much noise, cogging torque, and vibration are reduced, improves through practical analysis.

Keywords

References

  1. Paresh C. Sen, "Principle of Electric Machines an d Power Electronics (2nd ed), 1998
  2. J.R. Hendershot, T.J.E. Miller, "Design of Brushless Permanent Magnet Machines", Motor Design Books LLC, 2010
  3. EMDYNE, "JMAG", Jmag Application Note Analysis of a Permanent Magnet Brush Motor
  4. EMDYNE, "JMAG", Jmag Application Note Basic Characteristic Analysis of a Motor with 2 Brushes, 6 Poles, and 19 Slots
  5. EMDYNE, "JMAG", Jmag Application Note Iron Loss Analysis of a Brush Motor
  6. Agency for Technology and Standards, 2009, "Blower motor for Automobiles", Reliability Standard, RS R 0010.
  7. F. C. McQuiston and J. D. Parker, "Heating, Ventilating, and Air Conditioning Analysis and Design", John Wiley & Sons, Inc, 1994.
  8. Jeong Yong Wook, Jeong Ku Sup, and Kim Seong Hoe, "Study of over current protecting apparatus for automobile blower motor", ICROS, Mar. 2010.
  9. Agency for Technology and Standards, 2009, "Blower motor for Automobiles", Reliability Standard, RS R 0010.