Vibration Reduction of Marine Permanent Magnet Propulsion Motor without Position Sensor
ID:45 View Protection:ATTENDEE Updated Time:2020-11-11 12:09:22 Hits:344 Poster Presentation

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Abstract
This paper presents the effects of inverter non-linearity, current sampling deviation and high frequency injected signal on vibration for a marine permanent magnet propulsion synchronous motor (PMSM) without position sensor. By using an embedded notch filter, major character- ristic harmonics contained in position estimated and motor vibration are attenuated, and high frequency noise signal is suppressed at the same time. A random algorithm based on a two-state Markov chain is presented to realize randomization of injected frequency. The random algorithm is effective in homogenizing current spectrum and reducing motor vibration peak value caused by high frequency signal injected. Finally, the correctness of theoretical analysis and effectiveness of the proposed strategy are verified by simulation.
Keywords
marine permanent magnet synchronous motor; high frequency injection; vibration reduction; notch filter; Markov chain
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Important Date
  • Conference Date

    Oct 21

    2019

    to

    Oct 24

    2019

  • Oct 13 2019

    Abstract Notification of Acceptance

  • Oct 13 2019

    Draft paper submission deadline

  • Oct 14 2019

    Draft Paper Acceptance Notification

  • Oct 24 2019

    Registration deadline

  • Oct 29 2019

    Final Paper Deadline

Organized By
Xi'an Jiaotong University
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