• DocumentCode
    1766117
  • Title

    Optimization Design and Research of a Hybrid Excitation Compulsator

  • Author

    Shaopeng Wu ; Dansong Cheng ; Shumei Cui

  • Author_Institution
    Dept. of Electr. Eng. & Autom., Harbin Inst. of Technol., Harbin, China
  • Volume
    41
  • Issue
    5
  • fYear
    2013
  • fDate
    41395
  • Firstpage
    1280
  • Lastpage
    1284
  • Abstract
    A compulsator is the best pulse power supply of an electromagnetic gun, into which the energy storage, electromechanical energy conversion, and pulse shaping are integrated. Compulsators were usually electrical excitations. A permanent magnetic excitation is introduced to simplify the structure and remove brushes and slip rings based on an individual electrical excitation compulsator. The existent hybrid excitation compulsator is analyzed, and some experiments are performed. Some resulting problems are presented, such as the no-load voltage waveform distortion, the inhomogeneous magnetic field distribution, and the complicated end compensation structure. The hybrid compulsator is optimized by arranging its armature and field windings in different form, and increasing the axial length of shield instead of the original structure. The influences on permanent magnet (PM) during high-current pulse discharge are researched, and the method to check the safety of the PM is presented. The self-excitation control mode of experimental prototype is developed. The special self-excitation process and realization mode are elaborated. Comparing with electrical excitation compulsators, seed current is not required during which the hybrid excitation compulsator establishes the self-excitation process.
  • Keywords
    direct energy conversion; discharges (electric); energy storage; permanent magnets; pulsed power supplies; railguns; windings; PM; armature; axial length; brushes; complicated end compensation structure; electrical excitation compulsator; electromagnetic gun; electromechanical energy conversion; energy storage; field windings; high-current pulse discharge; hybrid excitation compulsator optimization design; inhomogeneous magnetic field distribution; no-load voltage waveform distortion; permanent magnet; permanent magnetic excitation; pulse power supply; pulse shaping; realization mode; seed current; self-excitation control mode; self-excitation process; slip rings; Demagnetization; Discharges (electric); Magnetic noise; Magnetic shielding; Prototypes; Stator cores; Windings; Compulsator; design optimization; excitation; hybrid;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2013.2251671
  • Filename
    6484182