scholarly journals Electromechanical Coupling Modelling of High Speed EMUs with Rotor Field Oriented Control

2020 ◽  
Vol 1550 ◽  
pp. 042047
Author(s):  
Junguo Wang ◽  
Zhaoyuan Yao ◽  
M.F. Haseen ◽  
Yongxiang Zhao

This paper deals with the indirect rotor field-oriented control of asynchronous motor whose speed is controlled by a fuzzy self-adjustable proportional integral controller. This motor drive is used to propel an electric vehicle. The designing and the implementing of the fuzzy self-adjustable proportional integral controller are presented. This controller is proposed as a solution to compensate for the effect of the machine parameters variation and the external conditions. The characteristic of this controller is its capacity to adapt in real time its gains in order to reject the machine parameters disturbances. A series of measurements has been achieved to prove the performances of the improved drive using the proposed controller. Experimental results showed the high-speed tracking and the rejection disturbances capacity of the fuzzy self-adjustable proportional integral controller.


2016 ◽  
Vol 24 ◽  
pp. 2084-2105
Author(s):  
Mohammad JANNATI ◽  
Ali MONADI ◽  
Nik Rumzi NIK IDRIS ◽  
Ahmad Athif MOHD FAUDZI ◽  
Frede BLAABJERG

Author(s):  
Mohammad Jannati ◽  
Ali Monadi ◽  
Sajad A. Anbaran ◽  
Nik Rumzi Nik Idris ◽  
Mohd Junaidi Abdul Aziz

2013 ◽  
Vol 391 ◽  
pp. 223-227
Author(s):  
Li Hong Li ◽  
Fei Long ◽  
Jin Jun Yin ◽  
Bang Qi Wang

In this paper, the mathematical model of dual three-phase induction motor is constructed based on space vector decomposition. The rotor field oriented control of the motor is then proposed. The simulation model of the motor is constructed in Matlab/Simulink/PLECS software. Simulation systems of the start-up transient and the rotor field oriented control of the motor are established. The simulation results validate the model and the effectiveness of the proposed control method.


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