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The Adaptive Backstepping Control of Permanent Magnet Synchronous Motor Supplied by Current Source Inverter

机译:电流源逆变器提供的永磁同步电动机的自适应反步控制

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摘要

The sensorless control system of permanent magnet synchronous motor (PMSM) fed by current source inverter is presented in this paper. The adaptive backstepping control system and the backstepping speed observer are presented. The control systems are based on multiscalar variables. The control variables are dc-link voltage and the output current vector pulsation. The control system was named the voltage control system because of the fact that the first control variable is voltage in dc-link. The machine inverter is treated as a commutator. It works with constant modulation index. The proposed control system is robust on mechanical and electromagnetical parameters of the motor. The adaptive estimator of the stator resistance is introduced. Such an approach to control of the PMSM motor gives better performance. It is robust to dynamic uncertainties and does not require knowledge of the system parameters. The mathematical equation was introduced. Simple method limitation of control variables is explained. The reference variables must be limited to a constant or various value if the motor system has to be used in the industrial applications. The simulation and experimental test are shown.
机译:本文提出了一种由电流源逆变器供电的永磁同步电动机(PMSM)的无传感器控制系统。提出了自适应反步控制系统和反步速度观测器。控制系统基于多标量变量。控制变量是直流母线电压和输出电流矢量脉动。该控制系统之所以被命名为电压控制系统,是因为第一个控制变量是直流母线中的电压。电机逆变器被视为换向器。它以恒定的调制指数工作。所提出的控制系统对电动机的机械和电磁参数具有鲁棒性。介绍了定子电阻的自适应估计器。这种控制PMSM电动机的方法可提供更好的性能。它对动态不确定性具有鲁棒性,并且不需要了解系统参数。介绍了数学方程式。说明了控制变量的简单方法限制。如果必须在工业应用中使用电动机系统,则必须将参考变量限制为恒定值或各种值。显示了仿真和实验测试。

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