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Sensorless High-Precision Position Correction Strategy for a 100 kW@20 000 r/min BLDC Motor With Low Stator Inductance

  • Shaohua Chen
  • , Wensheng Sun
  • , Kun Wang*
  • , Gang Liu
  • , Lianqing Zhu
  • *此作品的通讯作者
  • Beijing Information Science & Technology University
  • Beijing Engineering Research Center of Photoelectric Information and Instrument

科研成果: 期刊稿件文章同行评审

摘要

This paper focuses on the sensorless high-precision position correction strategy for a 100 kW@20 000 r/min brushless dc (BLdc) motor with low stator inductance (0.051 mH). Two key points related to the sensorless were studied. The one is the rotor position detection with high-frequency interference. The other one is the commutation compensation for the high-speed BLdc motor with low stator inductance in whole speed range. In order to filter out the high-frequency interference, the main factors, which that can influence the rotor position detection and the commutation accuracy were analyzed. In order to compensate the commutation error in high-precision and whole speed range, the relationship between the commutation error angle and the phase current deviation was derived. It is noted that the commutation time and the phase current error can exactly reflect the commutation error angle. Then, a novel sensorless high-precision position correction strategy based on the uncommutation current was proposed. Finally, the experiment platform based on a 100 kW@20 000 r/min BLdc motor was built, and the validity and efficiency of the proposed strategy were proved.

源语言英语
文章编号8259339
页(从-至)4288-4299
页数12
期刊IEEE Transactions on Industrial Informatics
14
10
DOI
出版状态已出版 - 10月 2018

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