New Permanent Magnet Synchronous Motor Current Sensing Phase Delay Compensation Method

  • Park, Sei-Hun
  • Kim, Il-Hwan
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초록

This paper presents a method that can improve the performance of permanent magnet synchronous motor current control by minimizing the measured current phase delay caused by the Low Pass Filter(LPF) used to cut off the noises that flowed in when feedback currents are measured. Although existing methods that change the Cutoff Frequency of the LPF can minimize phase delays during high speed rotations, their noise cutoff effects are much lower and this may lead to the decline of control performance. Therefore, in this study, an algorithm that can compensate current phase delays through relatively simple calculations from the synchronous motor d-q axis coordinate transformation matrix and the inverse transformation matrix is proposed and the validity of the proposed method is verified by comparing the waveform of the calculated current with the waveform of actual currents through simulations and experiments.

키워드

PMSMCurrent sensingMotorVCFPhase delayTORQUE-RIPPLE MINIMIZATIONBRUSHLESS DC MOTORDRIVES
제목
New Permanent Magnet Synchronous Motor Current Sensing Phase Delay Compensation Method
저자
Park, Sei-HunKim, Il-Hwan
DOI
10.5370/JEET.2016.11.1.241
발행일
2016-01
유형
Article
저널명
Journal of Electrical Engineering & Technology
11
1
페이지
241 ~ 246