• DocumentCode
    112613
  • Title

    Effects of Imperfect Manufacturing Process on Electromagnetic Performance and Online Interturn Fault Detection in PMSMs

  • Author

    Leboeuf, Nicolas ; Boileau, Thierry ; Nahid-Mobarakeh, Babak ; Takorabet, Noureddine ; Meibody-Tabar, Farid ; Clerc, Guy

  • Author_Institution
    Gen. Electr. Power Conversion-Rotating Machines, Champigneulles, France
  • Volume
    62
  • Issue
    6
  • fYear
    2015
  • fDate
    Jun-15
  • Firstpage
    3388
  • Lastpage
    3398
  • Abstract
    This paper deals with the consequences of some manufacturing imprecision related to the use of a fractional-slot concentrated winding (FSCW) in recent permanent-magnet synchronous machine (PMSM) designs. Although these topologies improve the efficiency of motors, they also lead to consider complex models, including undesirable harmonics, which can be strongly different from classical models expressed in a rotating frame. This may affect the control and the monitoring techniques used to detect some commonly reported faults such as turn short-circuit faults in the windings. Thus, adaptations are needed to improve classical fault detection methods. This paper considers an undesirable additional air gap, due to an imperfect manufacturing process, between the stator back iron and the teeth of a modular PMSM having an FSCW. A finite-element method and permeance network modeling are used to study the behavior of the machine. Good agreement is obtained between the two methods, validating the significant effects of such manufacturing faults on the behavior of the machine. Experimental tests confirm the occurrence of additional air gaps and their consequences on some classical interturn fault detection methods. Improvements are also proposed in order to consider relevant indicators even in the presence of inherent manufacturing faults.
  • Keywords
    air gaps; fault diagnosis; finite element analysis; machine control; permanent magnet motors; reliability; short-circuit currents; stators; synchronous motors; PMSM fractional slot concentrated winding; air gap; electromagnetic performance; finite element method; imperfect manufacturing process; modular PMSM teeth; monitoring techniques; motor control; online interturn fault detection; permanent magnet synchronous machine FSCW; permeance network modeling; stator back iron; Air gaps; Atmospheric modeling; Forging; Harmonic analysis; Iron; Stators; Torque; Additional air gaps; Additional air-gaps; finite element method; finite-element (FE) method; inter-turn fault detection; interturn fault detection; permeance network (PN) modeling; permeance network modeling;
  • fLanguage
    English
  • Journal_Title
    Industrial Electronics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0046
  • Type

    jour

  • DOI
    10.1109/TIE.2014.2387338
  • Filename
    7001043