转子位置传感器误差对调速永磁同步电机的影响

Jens Gachter, M. Hirz, R. Seebacher
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引用次数: 1

摘要

对于电动汽车应用,三相电机,如永磁同步电机和感应电机是首选。这些机型一般采用磁场定向控制,其高转矩质量是一个重要的性能标准。为了应用磁场定向控制,通常使用转子位置传感器来完成从静止参照系到旋转参照系的必要转换,反之亦然。这些绝对位置传感器也可以用于产生速度信号以进行速度控制,因为集成额外的速度传感器会增加成本、复杂性和故障责任。汽车应用中有不同类型的传感器原理,其精度和误差特性差异很大。这些传感器误差对速度信号的产生产生影响,因此对应用电机的转矩和速度控制行为产生影响。考虑两种不同的速度信号产生方法,重点研究了转子位置传感器误差信号在速度脉动和控制活动方面所引起的扰动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of rotor position sensor errors on speed controlled permanent magnetized synchronous machines
For electric vehicle applications, three phase electric machines like permanent magnetized synchronous machines and induction machines are the preferred choice. These machine types are controlled by the field-orientated control concept in general, whose high torque quality is an important performance criterion. For applying the field-orientated control, usually rotor position sensors are used to perform the necessary transformations from a stationary reference frame into a rotating reference frame and vice versa. These absolute position sensors can also be utilized for generating a speed signal for speed control purpose, since integrating an additional speed sensor increases costs, complexity and fault liability. There are different kinds of sensor principles for automotive applications available, which differ significantly in their accuracy and error characteristics. These sensor errors take impact on the speed signal generation and therefore on the torque and speed control behaviour of the applied electric machines. This paper focuses on the induced disturbances from rotor position sensor error signals regarding speed ripple and control activity considering two different methods of speed signal generation.
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