DocumentCode :
1303805
Title :
Static Eccentricity Fault Detection in Single-Stator–Single-Rotor Axial-Flux Permanent-Magnet Machines
Author :
Mirimani, Seyyed Mehdi ; Vahedi, Abolfazl ; Marignetti, Fabrizio ; De Santis, Elena
Author_Institution :
Dept. of Electr. Eng., Iran Univ. of Sci. & Technol., Tehran, Iran
Volume :
48
Issue :
6
fYear :
2012
Firstpage :
1838
Lastpage :
1845
Abstract :
This paper studies static eccentricity (SE) fault detection in axial-flux permanent-magnet (AFPM) machines using 3-D finite-element analysis. The use of numerical modeling makes it possible to precisely study the eccentricity fault detection in these types of machines. The simulations are validated using experimental measurements. To the best knowledge of the authors, SE fault detection in AFPMs has not been studied before. Hence, a new definition for the SE factor is presented in these types of machines. A motor with different degrees of rotor eccentricity is simulated, and the back electromotive force (EMF) of all coils of the stator is obtained. In addition, an appropriate criterion has been presented for the fault detection using the back EMF of the coils. This study indicates that the back EMF of the coils of the stator is a good criterion for eccentricity fault detection. It is observed that the unbalanced back EMF suggests a method for the indirect measurement of eccentricity that could be carried out during manufacturing and assembling processes or maintenance operation.
Keywords :
electric potential; fault diagnosis; finite element analysis; permanent magnet machines; rotors; 3-D finite-element analysis; AFPM machines; SE factor; SE fault detection; assembling processes; back EMF; back electromotive force; maintenance operation; manufacturing processes; numerical modeling; single-stator-single-rotor axial-flux permanent-magnet machines; static eccentricity fault detection; unbalanced back EMF; Air gaps; Coils; Fault detection; Permanent magnet motors; Rotors; Stator windings; 3-D finite-element method (3D-FEM); Asymmetric air gap; axial-flux permanent-magnet machine (AFPMM); eccentricity; fault detection;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2012.2221673
Filename :
6317166
Link To Document :
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