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Six-Phase Induction Machine Model for Electrical Fault Simulation Using the Circuit-Oriented Method
DOI:10.1109/TIE.2015.2493727.png)
摘要
En 中文
The aim of this paper is to present a six-phase induction machine (6PIM) model based on the so-called circuit-oriented approach suitable for simulation of electrical faults on both stator and rotor sides. This specific model has been developed by using only resistances, inductances, and controlled voltage sources. The coupling effects between both the stator and the rotor have been taken into account by the computation of stator-rotor mutual inductances. The model has been developed under the MATLAB/Simulink environment in order to have a universal tool that is easy to use with any control techniques. With this model, it is possible to simulate any type of electrical faults during the motion by closing or opening corresponding switches. The performances of the model have been validated by comparing simulation and experimental results of a 90-W 14-V 50-Hz two-pole 6PIM operating with different levels of load torque in healthy and faulty modes. Furthermore, this model has been associated to a faulttolerant speed control method in phase opening occurrences in order to test the model accuracy.
Keyword:
Electrical faults
equivalent circuit
fault diagnosis
fault-tolerant operation
induction machine
modeling
multiphase ac machines
rotor windings
simulation
stator windings
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期刊
IF:
7.2
论文数:
1.8W
被引数:
9.8W
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引用论文
Experimental Tests of Dual Three-Phase Induction Motor Under Faulty Operating Condition双三相感应电动机故障工况的实验测试
Variable-Speed Five-Phase Induction Motor Drive Based on Predictive Torque Control基于预测转矩控制的变速五相感应电机驱动

