Title :
Inclined mixed air gap eccentricity detection method for an induction motor
Author :
Samaga, B. L. Rajalakshmi ; Vittal, K.P.
Author_Institution :
E&E Dept., Canara Eng. Coll., Mangalore, India
Abstract :
Significant number of research articles on axial uniform mixed air gap eccentricity detection methods in three phase squirrel cage induction motor are reported in literature. Most often, machines suffer from non uniform axial air gap eccentricity. In this paper, a study conducted on a three phase squirrel cage induction motor suffering from inclined mixed air gap eccentricity is presented and a new parameter is introduced to detect the inclined eccentricity fault. Experiments were conducted on 3 phase squirrel cage induction motor to show the impact of inclined mixed air gap eccentricity on dq components of stator currents. To validate the experimental results, mathematical expressions and modeling and simulation results are presented. The paper concludes with a note that an eccentricity detection unit with dq components of stator currents in synchronous reference frame as detection parameters can be embedded in the controller circuit to monitor the health of the machine.
Keywords :
electric sensing devices; fault diagnosis; machine insulation; mathematical analysis; squirrel cage motors; stators; axial uniform inclined mixed air gap eccentricity detection method; dq component; health monitoring; inclined eccentricity fault detection; mathematical expressions; stator current; synchronous reference frame; three phase squirrel cage induction motor; Atmospheric modeling; Harmonic analysis; Induction motors; Power harmonic filters; Rotors; Stator windings; PSD analysis; data acquisition system; dq currents; eccentricity fault; induction motor;
Conference_Titel :
Advances in Energy Conversion Technologies (ICAECT), 2014 International Conference on
Conference_Location :
Manipal
Print_ISBN :
978-1-4799-2205-5
DOI :
10.1109/ICAECT.2014.6757058