DocumentCode :
21158
Title :
Analysis and Design of Hybrid Excitation Linear Eddy Current Brake
Author :
Baoquan Kou ; Yinxi Jin ; He Zhang ; Lu Zhang ; Hailin Zhang
Author_Institution :
Dept. of Electr. Eng., Harbin Inst. of Technol., Harbin, China
Volume :
29
Issue :
2
fYear :
2014
fDate :
Jun-14
Firstpage :
496
Lastpage :
506
Abstract :
This paper presents a novel parallel magnetic path hybrid excitation linear eddy current brake. The eddy current brake using parallel magnetic path scheme with the presence of the PMs, whose flux lines in the primary are oppositely directed with respect to the flux lines by the excitation windings, has the effect of mitigating the saturation of the iron in the teeth of the primary. This allows the brake to be fed with more intense currents improving the braking force. The structure and working principle are introduced. The analytical model was found using the equivalent magnetic circuit method and the layer theory approach. The design method of the eddy current brake was studied using the finite element method. Compared with traditional induction motors and synchronous motors, the design method of the eddy current brake has not been proposed. Therefore, in this paper, the design parameters of the hybrid excitation linear eddy current brake were gradually determined by consulting the design method of the linear induction motor and linear synchronous motor, and a design flowchart was proposed. Finally, a prototype of hybrid excitation linear eddy current brake was created and an experimental study of the eddy current brake was conducted.
Keywords :
eddy current braking; finite element analysis; linear induction motors; linear synchronous motors; magnetic circuits; windings; equivalent magnetic circuit method; excitation windings; finite element method; hybrid excitation linear eddy current brake; layer theory approach; linear induction motor; linear synchronous motor; parallel magnetic path; Eddy currents; Force; Loading; Magnetic circuits; Permanent magnets; Saturation magnetization; Windings; Braking force analysis; design method; eddy current brake; experimental study; hybrid excitation;
fLanguage :
English
Journal_Title :
Energy Conversion, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8969
Type :
jour
DOI :
10.1109/TEC.2014.2307164
Filename :
6757032
Link To Document :
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