永磁同步电机无传感器转子温度估计技术的硬件和软件实现

Martin Ganchev, Christian Kral, T. Wolbank
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引用次数: 6

摘要

本文研究了一种新型永磁同步电机转子温度无传感器估计技术的硬件和软件实现。该方法需要在电机的d轴间歇注入电压脉冲,而q电流保持为零。所得到的d电流响应的斜率反映了给定的电机定子铁芯的饱和水平,这对于给定的磁体温度是独特的。由于这是一个强烈的非线性关系,因此需要电机的查找表(LUT)。为了正确捕获电流导数,需要沿电压脉冲持续时间对d电流进行同步过采样。本文演示了一个合适的硬件设置和软件集成的方法到一个共同的面向场的空间矢量控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hardware and software implementation of sensorless rotor temperature estimation technique for Permanent Magnet Synchronous Motor
The paper focuses on the hardware and software implementation of a novel sensorless rotor temperature estimation technique for Permanent Magnet Synchronous Machines (PMSMs). The method requires an intermittent injection of a voltage pulse in the d-axis of the motor while the q-current is kept zero. The slope of the resulted d-current response reflects a given saturation level of the machine stator steel core which is distinctive for a given magnet temperature. Since this is a strongly non-linear relationship, a look-up-table (LUT) for the motor is required. In order to capture correctly the current derivative, a synchronous oversampling of the d-current along the voltage pulse duration is required. The paper demonstrates a suitable hardware setup and software integration of the method into a common field oriented space vector control.
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