DocumentCode :
1503231
Title :
Evaluation of Slot-Embedded Partial Electrostatic Shield for High-Frequency Bearing Current Mitigation in Inverter-Fed Induction Motors
Author :
Ferreira, Fernando J T E ; Cistelecan, Mihail V. ; De Almeida, Anìbal T.
Author_Institution :
Dept. of Electr. Eng., Polytech. Inst. of Coimbra (IPC/ISEC), Coimbra, Portugal
Volume :
27
Issue :
2
fYear :
2012
fDate :
6/1/2012 12:00:00 AM
Firstpage :
382
Lastpage :
390
Abstract :
In the last decade, the use of PWM voltage-source inverters to control three-phase squirrel-cage induction motors has increased significantly. Consequently, high-frequency current activity in the bearings of inverter-fed motors and/or of devices mechanically coupled to their shaft is presently a common issue, ultimately shortening the bearings lifetime. In fact, bearing failures occurrence in inverter-fed motors increased dramatically in the last few years. Recently, the effectiveness of insulation-based bearing current mitigation techniques (e.g., bearings with insulated rings or ceramic spheres) and/or motor shaft grounding with an electric contact brush has been fairly investigated. However, there are some alternative high-frequency common-mode bearing current mitigation techniques requiring further investigation. In this paper, a stator slot-embedded partial electrostatic shield to reduce the capacitive coupling between the stator windings and the rotor in inverter-fed motors is proposed, analyzed, and implemented, being experimentally demonstrated its practicability and effectiveness in attenuating the common-mode voltage between the rotor shaft and the frame/ground, contributing to the reduction of high-frequency common-mode bearing current activity.
Keywords :
PWM invertors; electrostatics; machine control; squirrel cage motors; stators; PWM voltage-source inverters; bearing lifetime; capacitive coupling reduction; common-mode voltage; electric contact brush; high-frequency bearing current mitigation; high-frequency common-mode bearing current mitigation techniques; high-frequency current activity; insulation-based bearing current mitigation techniques; inverter-fed induction motors; motor shaft; rotor shaft; slot-embedded partial electrostatic shield evaluation; stator slot-embedded partial electrostatic shield; stator windings; three-phase squirrel-cage induction motor control; Conductors; Electrostatics; Pulse width modulation; Rotors; Shafts; Stator windings; Bearing current; PWM; common-mode current; electrostatic shield; finite element method; high-frequency current; induction motors; mitigation techniques; shaft-ground voltage; voltage-source inverter;
fLanguage :
English
Journal_Title :
Energy Conversion, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8969
Type :
jour
DOI :
10.1109/TEC.2012.2187452
Filename :
6189776
Link To Document :
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