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High-Precision Sensorless Drive for High-Speed BLDC Motors Based on the Virtual Third Harmonic Back-EMF

  • Speed Magnetically Suspended Motor Technology and Application

Research output: Contribution to journalArticlepeer-review

Abstract

In order to improve the performance of the high-speed brushless direct current motor drives, a novel high-precision sensorless drive has been developed. It is well known that the inevitable voltage pulses, which are generated during the commutation periods, will impact the rotor position detecting accuracy, and further impact the performance of the overall sensorless drive, especially in the higher speed range or under the heavier load conditions. For this reason, the active compensation method based on the virtual third harmonic back electromotive force incorporating the SFF-SOGI-PLL (synchronic-frequency filter incorporating the second-order generalized integrator based phase-locked loop) is proposed to precise detect the commutation points for sensorless drive. An experimental driveline system used for testing the electrical performance of the developed magnetically suspended motor is built. The mathematical analysis and the comparable experimental results have been shown to validate the effectiveness of the proposed sensorless drive algorithm.

Original languageEnglish
Article number7888565
Pages (from-to)1528-1540
Number of pages13
JournalIEEE Transactions on Power Electronics
Volume33
Issue number2
DOIs
StatePublished - Feb 2018

Keywords

  • High-speed brushless direct current (BLDC)
  • phase-locked loop (PLL)
  • sensorless drive
  • virtual third harmonic back electromotive force (back-EMF)

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