DocumentCode
1447797
Title
Steady-State and Transient Performance Analysis for a Single-Phase Capacitor-Run Permanent-Magnet Motor With Skewed Rotor Slots
Author
Kurihara, Kazumi ; Kubota, Tomotsugu ; Hori, Masahiro
Author_Institution
Dept. of Electr. & Electron. Eng., Ibaraki Univ., Hitachi, Japan
Volume
57
Issue
1
fYear
2010
Firstpage
44
Lastpage
51
Abstract
This paper presents a numerical analysis method to accurately predict the steady-state and transient performance of a single-phase capacitor-run permanent-magnet motor with skewed rotor slots. Two-dimensional time-stepping finite-element analysis has been used to successfully predict the steady-state and dynamic transient performance of the prototype motor by using a multislice model. The agreement between computed and measured results of the prototype motor validates the proposed analysis method. The maximum efficiency and minimum torque ripple versus the value of capacitance have been determined from the results of the steady-state synchronous performance analysis. The run-up response corresponding to skew pitch has been obtained from the results of the starting performance analysis.
Keywords
finite element analysis; permanent magnet motors; rotors; maximum efficiency; minimum torque ripple; multislice model; single-phase capacitor-run permanent-magnet motor; skew pitch; skewed rotor slots; steady-state analysis; transient performance analysis; two-dimensional time-stepping finite-element analysis; Capacitance; current measurement; finite-element methods (FEMs); permanent magnets (PMs); starting; synchronous motors; torque; velocity measurement;
fLanguage
English
Journal_Title
Industrial Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2009.2032197
Filename
5256226
Link To Document