Magneto-Structural Coupling Field Analysis on the End Winding of an Multi-Phase Induction Machine

Author(s):  
Tao Huang ◽  
Jiangjun Ruan ◽  
Yujiao Zhang ◽  
Mengyun Sun ◽  
Hailong Liu ◽  
...  
Author(s):  
Alok Kumar Mohanty ◽  
K B Yadav

<em>Multi-phase machines are considered serious contenders as compared to the three phase machines for variable applications in generating mode. </em><em>This paper presents the transient performance analysis of a multi-phase induction machine operating in six-phase mode for power generation. In this paper the simulation and experimental analysis of a six-phase machine in generating mode have been made. The simulations are made and the machine functionality was investigated during no-load and when subjected to different types of loads. Experimental results are provided to confirm the ability of these models to represent during no load as well as during load period and the result were found to be satisfactory for power generation</em>.


Author(s):  
Guangfeng Lu ◽  
Xudong Yu ◽  
Xuezhi Dai ◽  
Gao Na

Author(s):  
Ali Hajary ◽  
Seyed Ghodratollah Seifossadat ◽  
Reza Kianinezhad ◽  
Alireza Saffarian ◽  
Seyed Saeedollah Mortazavi

Purpose This paper aims to present a novel robust control method based on an adaptive PI controller (APIC) to compensate for different disturbances and unknown dynamics for multi-phase induction machines. Design/methodology/approach The gains of the APIC are adapted online according to the tracking error. Proposed APIC is accompanied with designed linear disturbance observer (LDO) to present robust behavior to machine parameter variations and fault disturbances. Findings The results show remarkable dynamic performance in both healthy and faulty conditions when the six-phase induction machine works under APIC and LDO schemes. Originality/value The proposed controller need not readjust current controllers for the post-fault condition. The developed Simulink model efficiency is confirmed through experimental tests.


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