二元霍尔传感器永磁伺服电机位置速度估计方案的分析与设计

Oinan Ni, Ming Yang, S. Odhano, P. Zanchetta, Xiaosheng Liu, Dianguo Xu
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引用次数: 3

摘要

随着人们对交流电机驱动系统低成本、高效率、高性能的要求越来越高,带有二元霍尔传感器的永磁同步电机开始在许多领域得到应用。与无传感器控制相比,使用二进制霍尔传感器是驱动器获得适度控制性能的保证,并且与其他类型的位置传感器相比,体积更小,成本效益更高。本文提出了一种利用低分辨率位置传感器实现全闭环控制的方法,将位置估计器和速度估计器作为独立的系统来处理。结果表明,基于模型的方法可以充分利用模型信息,而无模型的方法可以平滑地处理量化后的霍尔位置信号。大量的实验结果证明了采用3位/极对传感系统的永磁同步电机驱动器的位置控制性能和基本伺服性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and Design of Position and Velocity Estimation Scheme for PM Servo Motor Drive with Binary Hall Sensors
with the increasing demand of low-cost, high-efficiency, high performance for AC motor drive system, the permanent-magnet synchronous motor (PMSM) with binary Hall sensors begins to be adopted in many fields. Compared with sensorless control, the usage of binary Hall sensors is a guarantee for the drive to achieve moderate control performance, and it is in smaller volume and more cost-effective compared with other types of position sensors. In this paper, a solution is provided to realize fully-closed loop control with low-resolution position sensors, by treating the position and speed estimators as separate systems. Results reveal that the model-based methods can take advantage of model information and model-free methods can smoothly process the quantized Hall position signal. Extensive experiment results are provided demonstrating the position control performance and basic servo performance for a PMSM drive using 3 bit-per-pole-pair sensing system.
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