There has been much literature on unbalanced magnetic pull in various types of electrical machine. This can lead to bearing wear and additional vibrations in the machine. In this paper a wound rotor induction is studied. Finite element analysis studies are conducted when the rotor has 10 % rotor eccentricity. The operating conditions are varied so that transient, motoring and doubly-fed induction generator modes are studied. This allows greater understanding of the radial forces involved. Wound rotor induction machines exhibit higher unbalanced magnetic pull than cage induction machines so this is an interesting aspect of their characteristic to address. © 2013 IEEE
Electromagnetic fields in the air gap of an electric machine produce electromagnetic forces between ...
Electromagnetic fields in the air gap of an electric machine produce electromagnetic forces between ...
A cage induction machine with dynamic rotor eccentricity is considered. In general, force and torque...
The paper addresses unbalanced magnet pull (UMP) due to rotor eccentricity in cage induction generat...
In this paper, the radial forces in an induction motor are calculated using finite element analysis....
In large induction machines (such as cage large induction motor pumps in the petro-chemical industry...
University of Technology Sydney. Faculty of Engineering and Information Technology.This thesis repor...
If the rotor of an induction motor is not concentric with the stator then an electromagnetic force ...
We conducted a 3-D electromagnetic analysis coupled with a 3-D mechanical analysis to analyze end-wi...
In large induction machines (such as large cage induction motor pumps in the petrochemical industry ...
Abstract:- The effect of the number of the rotor slits on the performance of a high-speed, high-powe...
This paper puts forward a model for assessing unbalanced magnetic pull (UMP) due to rotor eccentrici...
Experimental analyses of squirrel-cage induction machine vibrations under several rotor fault condi...
Electromagnetic fields in the air gap of an electric machine produce electromagnetic forces between ...
Electromagnetic fields in the air gap of an electric machine produce electromagnetic forces between ...
Electromagnetic fields in the air gap of an electric machine produce electromagnetic forces between ...
Electromagnetic fields in the air gap of an electric machine produce electromagnetic forces between ...
A cage induction machine with dynamic rotor eccentricity is considered. In general, force and torque...
The paper addresses unbalanced magnet pull (UMP) due to rotor eccentricity in cage induction generat...
In this paper, the radial forces in an induction motor are calculated using finite element analysis....
In large induction machines (such as cage large induction motor pumps in the petro-chemical industry...
University of Technology Sydney. Faculty of Engineering and Information Technology.This thesis repor...
If the rotor of an induction motor is not concentric with the stator then an electromagnetic force ...
We conducted a 3-D electromagnetic analysis coupled with a 3-D mechanical analysis to analyze end-wi...
In large induction machines (such as large cage induction motor pumps in the petrochemical industry ...
Abstract:- The effect of the number of the rotor slits on the performance of a high-speed, high-powe...
This paper puts forward a model for assessing unbalanced magnetic pull (UMP) due to rotor eccentrici...
Experimental analyses of squirrel-cage induction machine vibrations under several rotor fault condi...
Electromagnetic fields in the air gap of an electric machine produce electromagnetic forces between ...
Electromagnetic fields in the air gap of an electric machine produce electromagnetic forces between ...
Electromagnetic fields in the air gap of an electric machine produce electromagnetic forces between ...
Electromagnetic fields in the air gap of an electric machine produce electromagnetic forces between ...
A cage induction machine with dynamic rotor eccentricity is considered. In general, force and torque...