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Design of a speed controller for permanent magnet synchronous motor in pure electric vehicle applications

机译:纯电动汽车中永磁同步电动机调速器的设计

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In this study, a robust adaptive backstepping controller will be proposed for the speed control of permanent magnet synchronous motors (PMSM) in using pure electrical vehicles (PEV). A general electric drive train of PEV is conceptually rearrange to major subsystems as electric propulsion, energy source, and auxiliary subsystem and the load torque is modeled by considering the aerodynamic, rolling resistance and grading resistance. Stator resistance, damping coefficient, load torque are considered as uncertainties and noise generated at applying load torque to motor is also considered. It shows that the backstepping algorithm can be used to solve the problems of nonlinear system very well and robust controller can be designed without the variation of adaptive law. Simulation and experiment results are provided to demonstrate the effectiveness of the proposed controller.
机译:在这项研究中,将提出一种鲁棒的自适应反推控制器,用于使用纯电动汽车(PEV)的永磁同步电动机(PMSM)的速度控制。 PEV的一般电力传动系统在概念上重新布置到主要子系统,例如电力推进系统,能源和辅助子系统,并通过考虑空气动力,滚动阻力和分级阻力对负载扭矩进行建模。定子电阻,阻尼系数,负载转矩被认为是不确定因素,并且还将负载转矩施加到电动机时产生的噪声也被考虑在内。结果表明,该算法可以很好地解决非线性系统的问题,并且可以在不改变自适应律的前提下设计出鲁棒的控制器。仿真和实验结果提供了证明所提出的控制器的有效性。

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