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Automatic flux-weakening control of permanent magnet synchronous motors using a reduced-order controller

机译:使用降阶控制器的永磁同步电机自动弱磁控制

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摘要

This study presents a novel means of designing a simple and effective position and velocity controller for permanent magnet synchronous motors (PMSM). In contrast to the conventional two-loop control methods with full-state feedback, the proposed controller does not need current information of the motor for feedback purposes. However, under normal operation the steady-state d-axis current can still be controlled to zero to minimize power dissipation. In addition, implementing a simple overmodulation strategy allows the controller to automatically generate a flux-weakening control to expand the range of operating speed when voltage saturation occurs. In addition to not depending on system parameters used by the controller, the automatically generated demagnetizing current is also optimal in the sense of minimum power dissipation that differs from the maximum output torque design or the constant power design of the general flux-weakening control methods. Simulation and experimental results show that the controller can achieve an effective speed and position control with near-minimum power dissipation, even when voltage saturation occurs.
机译:这项研究提出了一种新颖的方法,可以为永磁同步电动机(PMSM)设计简单有效的位置和速度控制器。与具有全状态反馈的常规两环控制方法相比,所提出的控制器不需要出于反馈目的的电动机电流信息。但是,在正常操作下,稳态d轴电流仍可以控制为零以最大程度地降低功耗。此外,实施简单的过调制策略可使控制器在发生电压饱和时自动生成弱磁通控制,以扩大工作速度范围。除了不依赖于控制器使用的系统参数外,自动生成的消磁电流在最小功耗方面也是最佳的,该功耗不同于常规磁通弱化控制方法的最大输出转矩设计或恒定功率设计。仿真和实验结果表明,即使发生电压饱和,该控制器也能以接近最小的功耗实现有效的速度和位置控制。

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