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Nonlinear control of salient-pole PMSM for electric vehicles traction

机译:电动汽车牵引凸极永磁同步电机的非线性控制

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The applications of the Salient-Pole permanent magnet synchronous motor (PMSM) increase greatly due to their advantages such as high efficiency, high power factor, higher power density, high inertia torque ratio and long life on other types kinds of motors such as DC motors and induction motors. The present work deals with the problem of controlling Salient-Pole PMSM for traction in hybrid vehicles. The control objectives are twofold: i) tight regulation of the rotation speed motor to its desired value whatever the road profile, ii) asymptotic stability of the closed loop system. To this end, a Backstepping technique is used. It is shown using formal analysis and simulations that the proposed controller perfectly achieves all the control objectives.
机译:凸极永磁同步电动机(PMSM)的优点是其效率高,功率因数高,功率密度高,惯性转矩比高以及在其他类型的电动机(例如DC电动机)上具有长寿命等优点,从而大大增加了应用和感应电动机。当前的工作涉及控制用于混合动力车辆中的牵引的凸极PMSM的问题。控制目标是双重的:i)不管道路状况如何,都将转速电动机严格调节至所需值,ii)闭环系统的渐近稳定性。为此,使用了Backstepping技术。通过形式分析和仿真表明,所提出的控制器完美地实现了所有控制目标。

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