The permanent-magnet synchronous motor (PMSM) is a complex controlled object that is difficult to drive and control. In this study, the vector control strategy is adopted to drive the PMSM. The active disturbance rejection controller is used to achieve the closed-loop control of PMSM, which simplifies the computational complexity. A load torque observer and feedforward compensation component are designed to overcome the PMSM speed fluctuation of the load disturbance. An experimental system based on the DSP board is designed to test the controller performance. The results validate the control algorithm
International audienceThe selection of electric machines for an Electric Vehicle (EV) is mainly base...
International audienceThe selection of electric machines for an Electric Vehicle (EV) is mainly base...
© 2016 TCCT. An automatic disturbance rejection control (ADRC)-based model predictive torque control...
Permanent magnet synchronous motor (PMSM) is a popular electric machine in industry for its small vo...
External vibration, shock, unbalanced torque and other uncertain disturbances are mainly transmitted...
Permanent magnet brushless motor is a nonlinear system with multiple variables, the mathematical mod...
Permanent magnet brushless motor is a nonlinear system with multiple variables, the mathematical mod...
Permanent magnet brushless motor is a nonlinear system with multiple variables, the mathematical mod...
International audiencePermanent magnet synchronous motor (PMSM) isextensively used in industries. Re...
Due to the frequently changing working conditions and complex operating environment of electric vehi...
PMSM drive with high dynamic response is the attractive solution for servo applications like robotic...
PMSM drive with high dynamic response is the attractive solution for servo applications like robotic...
Fast dynamic response, precise tracking performance, and strong robustness to disturbance are usuall...
Fast dynamic response, precise tracking performance, and strong robustness to disturbance are usuall...
Fast dynamic response, precise tracking performance, and strong robustness to disturbance are usuall...
International audienceThe selection of electric machines for an Electric Vehicle (EV) is mainly base...
International audienceThe selection of electric machines for an Electric Vehicle (EV) is mainly base...
© 2016 TCCT. An automatic disturbance rejection control (ADRC)-based model predictive torque control...
Permanent magnet synchronous motor (PMSM) is a popular electric machine in industry for its small vo...
External vibration, shock, unbalanced torque and other uncertain disturbances are mainly transmitted...
Permanent magnet brushless motor is a nonlinear system with multiple variables, the mathematical mod...
Permanent magnet brushless motor is a nonlinear system with multiple variables, the mathematical mod...
Permanent magnet brushless motor is a nonlinear system with multiple variables, the mathematical mod...
International audiencePermanent magnet synchronous motor (PMSM) isextensively used in industries. Re...
Due to the frequently changing working conditions and complex operating environment of electric vehi...
PMSM drive with high dynamic response is the attractive solution for servo applications like robotic...
PMSM drive with high dynamic response is the attractive solution for servo applications like robotic...
Fast dynamic response, precise tracking performance, and strong robustness to disturbance are usuall...
Fast dynamic response, precise tracking performance, and strong robustness to disturbance are usuall...
Fast dynamic response, precise tracking performance, and strong robustness to disturbance are usuall...
International audienceThe selection of electric machines for an Electric Vehicle (EV) is mainly base...
International audienceThe selection of electric machines for an Electric Vehicle (EV) is mainly base...
© 2016 TCCT. An automatic disturbance rejection control (ADRC)-based model predictive torque control...