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Enhancement of Sensorless Control for Non-Sinusoidal Multiphase Drives-Part I: Operation in Medium and High-Speed Range

Article dans une revue avec comité de lecture
Auteur
MINI, Youssouf
ccNGUYEN, Ngac Ky
13338 Laboratoire d’Électrotechnique et d’Électronique de Puissance - ULR 2697 [L2EP]
ccSEMAIL, Eric
VU, Duc Tan
350739 Thai Nguyen University

URI
http://hdl.handle.net/10985/21462
DOI
10.3390/en15020607
Date
2022
Journal
Energies

Résumé

This two-part study proposes a new sensorless control strategy for non-sinusoidal multiphase permanent magnet synchronous machines (PMSMs), especially integrated motor drives (IMDs). Based on the Sliding Mode Observer (SMO), the proposed sensorless control strategy uses the signals (currents and voltages) of all fictitious machines of the multiphase PMSMs. It can estimate the high-accuracy rotor positions that are required in vector control. This proposed strategy is compared to the conventional sensorless control strategy that applies only current and voltage signals of the main fictitious machine, including the fundamental component of back electromotive force (back EMF) of non-sinusoidal multiphase PMSMs. Therefore, in order to choose an appropriate sensorless control strategy for the non-sinusoidal multiphase PMSMs, these two sensorless control strategies will be highlighted in terms of precision with respect to rotor position and speed estimation. Simulations and the experimental results obtained with a non-sinusoidal seven-phase PMSM will be shown to verify and compare the two sensorless control strategies. In this part of the study (part I), only sensorless control in the medium and high-speed range is considered. Sensorless control at the zero and low-speed range will be treated in the second part of this study (part II).

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Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Current Harmonic Eliminations for Seven-Phase Non-sinusoidal PMSM Drives applying Artificial Neurons 
    Communication avec acte
    VU, Duc Tan; ccNGUYEN, Ngac Ky; ccSEMAIL, Eric; NGUYEN, Thi Thanh Nga (Lecture Notes in Networks and Systems, Springer, 2020)
    This study is to deal with unwanted current harmonics in rotating (d-q) frames of a 7-phase non-sinusoidal permanent magnet synchronous machine (PMSM) in a wye-connected winding topology. The machine is supplied by a 7-leg ...
  • Current Harmonic Eliminations for Seven-Phase Non-sinusoidal PMSM Drives applying Artificial Neurons 
    Ouvrage scientifique
    VU, Duc Tan; ccSEMAIL, Eric; NGUYEN, Thi Thanh Nga; ccNGUYEN, Ngac Ky (Springer International Publishing, 2020-11)
    This study is to deal with unwanted current harmonics in rotating (d-q) frames of a 7-phase non-sinusoidal permanent magnet synchronous machine (PMSM) in a wye-connected winding topology. The machine is supplied by a 7-leg ...
  • Different possibilities of multiphase drives functioning in constant power region 
    Communication sans acte
    ZAHR, Hussein; VU, Duc Tan; ccSEMAIL, Eric; ccNGUYEN, Ngac Ky (2018)
    /
  • Control Strategies for Non-sinusoidal Multiphase PMSM Drives in Faulty Modes under Constraints on Copper Losses and Peak Phase Voltage 
    Article dans une revue avec comité de lecture
    VU, Duc Tan; DOS SANTOS MORAES, Tiago Jose; ccSEMAIL, Eric; ccNGUYEN, Ngac Ky (Institution of Engineering and Technology, 2019)
    In the context of future Permanent Magnet Synchronous Machines (PMSMs) with a high number of phases (>7) in integrated drives, this paper proposes several control strategies when multiphase PMSMs with non-sinusoidal back ...
  • Torque Optimization of a Seven-Phase Bi-harmonic PMSM in Healthy and Degraded Mode 
    Conférence invitée
    ZHANG, Hao; ZHAO, Benteng; GONG, Jinlin; XU, Yanliang; VU, Duc Tan; ccSEMAIL, Eric; DOS SANTOS MORAES, Tiago José; ccNGUYEN, Ngac Ky (IEEE, 2019)
    Compared to sinusoidal machines, a bi-harmonic machine (with only two harmonics of similar value in the electromotive force spectrum) can develop torque of comparable values under three kinds of supply: with only first or ...

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