Multiphysics Coupling Model to Characterise the Behaviour of Induction Motors With Eccentricity and Bearing Faults

被引:3
|
作者
Gong, Zifeng [1 ]
Desenfans, Philip [1 ]
Pissoort, Davy [1 ]
Hallez, Hans [2 ]
Vanoost, Dries [1 ]
机构
[1] Dept Elect Engn, M Grp, KU Leuven, Bruges Campus, B-8200 Brugge, Belgium
[2] Dept Comp Sci, M Grp, KU Leuven, Bruges Campus, B-8200 Brugge, Belgium
关键词
Rotors; Stator windings; Circuit faults; Integrated circuit modeling; Atmospheric modeling; Magnetic circuits; Magnetic flux; Bearing faults; eccentricity faults; induction motor; magnetic equivalent circuit; multiphysics coupling; DYNAMIC SIMULATION; DIAGNOSIS; MACHINES; ELEMENT;
D O I
10.1109/TEC.2023.3305717
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Bearing faults and eccentricity faults are significant contributors to induction motor performance degradation and failures. This article presents a multiphysics model for induction motors, integrating both the electromagnetic and mechanical systems to effectively characterise their behaviour in the presence of bearing faults and eccentricity faults. The proposed model incorporates the interactions between the two systems through the unbalanced magnetic pull, the electromagnetic torque, and the rotor motion. Bearing faults are represented as physical spalls with specific width and depth located on the bearing components. Eccentricity faults, on the other hand, are modelled as a non-uniformed distribution of air gap. Both the bearing fault models and the eccentricity fault models are integrated into the mechanical part of the multiphysics model. The model is validated by the comparison with the reference data from the motor manufacturer and the finite element method. Results show the proposed model achieves remarkable accuracy with moderate computational cost. The effects of fault severity, fault location, load torque, and external load on the unbalanced magnetic pull produced in induction motors and the rotor radial displacement are studied.
引用
收藏
页码:146 / 159
页数:14
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