High-performance control of permanent magnet synchronous motor
Hongmei Li, Yanan Zhou, Xiang Shen, Bao Zhengjie, Ni Xiaojun
Abstract
Hongmei Li, Yanan Zhou, Xiang Shen, Bao Zhengjie, Ni Xiaojun
Abstract
Based on the vector control of the permanent magnet synchronous motor (PMSM) and in order to obtain the system operation of wide variable speed range, the maximum torque per ampere (MTPA) control is often applied for the constant torque region, the flux-weakening control is used in the constant power region, moreover, the classical two closed-loop PI controller are often used. Recently, the energy-shaping nonlinear controller is increasingly used to control the nonlinear induction motor or PMSM, therefore, the comparison between both PMSM systems is devoted to research in this paper, one adopts the PI current controller, the other adopts the energy-shaping current controller. Both PMSM control systems are modeled based on the MATLAB/SIMULINK, and the system performances are tested and some conclusions are given.
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Based on the vector control of the permanent magnet synchronous motor (PMSM) and in order to obtain the system operation of wide variable speed range, the maximum torque per ampere (MTPA) control is often applied for the constant torque region, the flux-weakening control is used in the constant power region, moreover, the classical two closed-loop PI controller are often used. Recently, the energy-shaping nonlinear controller is increasingly used to control the nonlinear induction motor or PMSM, therefore, the comparison between both PMSM systems is devoted to research in this paper, one adopts the PI current controller, the other adopts the energy-shaping current controller. Both PMSM control systems are modeled based on the MATLAB/SIMULINK, and the system performances are tested and some conclusions are given.
Key concepts: Control theory (sociology), Vector control, Controller (irrigation), Torque, Direct torque control, Synchronous motor, PID controller, Ampere