Title :
Optimization design and research of a hybrid excitation compulsator
Author :
Wu, Shaopeng ; Cheng, Dansong ; Cui, Shumei
Author_Institution :
Dept. of Electr. Eng., Harbin Inst. of Technol., Harbin, China
Abstract :
Compulsator is the best pulse power supply of electromagnetic gun, into which the energy storage, electromechanical energy conversion and pulse shaping are integrated. Compulsators were usually electrical excitation. The permanent magnetic excitation was introduced to simplify the structure and remove brushes and slip rings based on an individual electrical excitation compulsator. The existent hybrid excitation compulsator was analyzed and some experiments were done. Some problems were presented therefrom, such as the no-load voltage waveform distortion, the inhomogeneous magnetic field distribution, and the complicated end compensation structure. The hybrid compulsator was optimized in the paper 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 during high current pulse discharge were researched, and the method to check the safety of the permanent magnet was presented. The self-excitation control mode of experimental prototype was developed; the special self-excitation process and realization mode were elaborated. Comparing with electrical excitation compulsators, seed current was not required during which the hybrid excitation compulsator established the self-excitation process.
Keywords :
magnetic fields; permanent magnets; pulsed power supplies; railguns; armature; brush removal; complicated end compensation structure; electrical excitation compulsator; electromagnetic gun; electromechanical energy conversion; energy storage; experimental prototype; field winding; high current pulse discharge; hybrid excitation compulsator; inhomogeneous magnetic field distribution; no-load voltage waveform distortion; optimization design; permanent magnetic excitation; pulse power supply; pulse shaping; realization mode; seed current; self-excitation control mode; self-excitation process; slip ring removal; Demagnetization; Discharges (electric); Eddy currents; Magnetic circuits; Prototypes; Stator cores; Windings;
Conference_Titel :
Electromagnetic Launch Technology (EML), 2012 16th International Symposium on
Conference_Location :
Beijing
Print_ISBN :
978-1-4673-0306-4
DOI :
10.1109/EML.2012.6325130