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Position Sensorless Drive and Online Parameter Estimation for Surface-Mounted PMSMs Based on Adaptive Full-State Feedback Control

机译:基于自适应全态反馈控制的表面安装PMSMS的位置无传感器驱动和在线参数估计

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摘要

In this article, a position sensorless drive and online parameter estimation method for surface-mounted permanent magnet synchronous machines-based on adaptive full-state feedback current control is proposed. The position sensorless drive is established by the detection of the back-electromotive force in the gamma delta synchronous reference frame, which is effective at the medium-speed and high-speed range. Besides, accurate estimation of the winding resistance, the stator inductance, and the flux linkage of the PM is achieved independently. Compared with the traditional recursive-least-square methods, the proposed parameter identification method can be easily implemented because of the significantly reduced execution time. With the help of the parameter identification, the precise position estimation can be achieved by the proposed sensorless control method regardless of the parameter variation during the operation. The stability of the proposed method is proved by the Lyapunov-function method. Finally, the effectiveness of the proposed method is validated by the simulation and experimental results.
机译:在本文中,提出了一种基于自适应全态反馈电流控制的表面上安装的永磁同步机的位置无传感器驱动和在线参数估计方法。通过检测伽马三角洲同步参考帧中的背部电动势来建立位置无传感器驱动,这在中速和高速范围内有效。此外,独立地实现了绕组阻力,定子电感和PM的磁通连杆的精确估计。与传统的递归 - 最小二乘方法相比,所提出的参数识别方法可以很容易地实现,因为执行时间显着降低。在参数识别的帮助下,可以通过所提出的无传感器控制方法实现精确的位置估计,而不管操作期间的参数变化。通过Lyapunov功能方法证明了所提出的方法的稳定性。最后,通过模拟和实验结果验证了所提出的方法的有效性。

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