• DocumentCode
    46682
  • Title

    Through-Hole Contactless Slipring System Based on Rotating Magnetic Field for Rotary Applications

  • Author

    Abdolkhani, Ali ; Hu, Aiguo Patrick ; Covic, Grant A. ; Moridnejad, Mahsa

  • Author_Institution
    Univ. of Auckland, Auckland, New Zealand
  • Volume
    50
  • Issue
    6
  • fYear
    2014
  • fDate
    Nov.-Dec. 2014
  • Firstpage
    3644
  • Lastpage
    3655
  • Abstract
    Contactless slipring system based on inductive power transfer is a preferable alternative to mechanical slipring assemblies. They are designed to deliver required output power to a rotary shaft without direct electrical contacts. The current single or multiple-unit through-hole single-phase systems often have limited power transfer capability within a confined physical space; thus, they may not be able to meet the load requirement for certain applications such as wind power pitch control. This paper presents an integrated polyphase through-hole contactless slipring system by generating a rotating primary magnetic field coupled with balanced power pickups at the secondary side with zero mechanical driving torque on the shaft. A new index termed “mutual inductance per pole” is introduced to simplify the analysis of the mutually coupled polyphase system to a single-phase basis. Simulation and practical experiments have demonstrated that, with the same physical size, the proposed contactless slipring setup can transfer 55% more power compared with the existing single-phase counterpart.
  • Keywords
    electric machines; inductive power transmission; magnetic fields; balanced power pickups; inductive power transfer; integrated polyphase through-hole contactless slipring system; load requirement; multiple-unit through-hole single-phase systems; mutual inductance per pole; mutually coupled polyphase system; power transfer capability; rotary shaft; rotating primary magnetic field; single-unit through-hole single-phase systems; wind power pitch control; Coils; Contacts; Couplings; Inductance; Magnetic fields; Magnetic flux; Shafts; Contactless slipring; inductive power transfer; rotary applications; rotating magnetic field; rotating transformer; wireless power transfer;
  • fLanguage
    English
  • Journal_Title
    Industry Applications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-9994
  • Type

    jour

  • DOI
    10.1109/TIA.2014.2312998
  • Filename
    6777294