• DocumentCode
    74290
  • Title

    Performance evaluation of a fault-tolerant decoupled dual-channel switched reluctance motor drive under open-circuits

  • Author

    Wen Ding ; Yunpeng Liu ; Yanfang Hu

  • Author_Institution
    State Key Lab. of Electr. Insulation & Power Equip., Xi´an Jiaotong Univ., Xi´an, China
  • Volume
    8
  • Issue
    4
  • fYear
    2014
  • fDate
    Apr-14
  • Firstpage
    117
  • Lastpage
    130
  • Abstract
    This study presents a new configuration for dual-channel switched reluctance motor (DCSRM) called as decoupled DCSRM (DDCSRM), which can be proposed as a suitable candidate for high-reliability applications. In this new DDCSRM, the two channels could be considered as two synchronously independent 6/4 three-phase SRMs with no mutual coupling when they are excited simultaneously. The machine topology and magnetic characteristics of flux distribution, static flux linkage and torque by using finite-element analysis are presented. Then, the mathematic models of the DDCSRM drive under normal and open-circuit fault operations are proposed. To achieve fault-tolerant operation, a control strategy of open-circuit faults for the DDCSRM drive is presented. The key of the fault-tolerant control strategy is to maintain the rotor speed as the normal motoring operation. The dynamic performances of the DDCSRM drive under normal and open-circuit fault conditions are analysed by using the control strategy. Finally, an experimental setup for a 12/8 DDCSRM drive system is built for verification. The experimental results at normal and various open-circuit fault conditions are presented to verify the control strategy of the DDCSRM drive system and the analytical and simulation results.
  • Keywords
    angular velocity control; couplings; fault tolerance; finite element analysis; machine control; magnetic flux; performance evaluation; reliability; reluctance motor drives; torque control; DDCSRM drive system; decoupled DCSRM; fault-tolerant control strategy; fault-tolerant decoupled dual-channel switched reluctance motor drive; finite-element analysis; flux distribution; high-reliability applications; machine topology; magnetic characteristics; mathematic models; open-circuit fault operations; performance evaluation; rotor speed; static flux linkage; synchronous independent 6/4 three-phase SRM; torque;
  • fLanguage
    English
  • Journal_Title
    Electric Power Applications, IET
  • Publisher
    iet
  • ISSN
    1751-8660
  • Type

    jour

  • DOI
    10.1049/iet-epa.2013.0293
  • Filename
    6786868