Prediction of magnetically induced vibration in a PMSM using time stretched pulse excitation

  • Kim, Doyeon
  • Song, Jeongyong
  • Jang, Gunhee
Citations

SCOPUS

1

초록

This paper presents a method to predict magnetically induced vibration in a permanent magnet synchronous motor (PMSM) using time stretched pulse (TSP) excitation. The TSP signal has high signal to noise ratio and flat frequency spectrum, and it can be easily generated by MATLAB in order to excite a PMSM. The magnetic forces acting on teeth of a stator are calculated by the magnetic finite element analysis and the Maxwell stress tensor method. The structural transfer function of the motor is determined using the simulated magnetic forces and the measured vibrations when the TSP excitation is applied to the motor. Finally, the magnetically induced vibration of the motor in operating condition is predicted using the identified structural transfer function and simulated magnetic forces.

키워드

Finite element methodMagnetismPermanent magnetsSignal to noise ratioSynchronous motorsTransfer functionsVibrations (mechanical)Frequency spectraHigh signal-to-noise ratioMagnetic finite-element analysisMagnetically induced vibrationMaxwell stress tensor methodOperating conditionPermanent Magnet Synchronous MotorPulse excitationElectric machine theory
제목
Prediction of magnetically induced vibration in a PMSM using time stretched pulse excitation
저자
Kim, DoyeonSong, Jeongyong Jang, Gunhee
DOI
10.1109/ECCE.2014.6953564
발행일
2014-11
유형
Conference Paper
저널명
2014 IEEE Energy Conversion Congress and Exposition, ECCE 2014
페이지
2434 ~ 2440