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High-Precision Speed and Position Estimation Based on Hall Vector Frequency Tracking for PMSM With Bipolar Hall-Effect Sensors

机译:基于霍尔矢量频率跟踪的双极霍尔效应传感器基于PMSM的高精度速度和位置估计

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摘要

Because of the low cost and the convenient installation, bipolar Hall-effect sensors are commonly applied to permanent magnet synchronous motors. Generally, speed and position are estimated inaccurately due to the installation error of the sensors. This paper addresses two key challenges on improving the estimation precision: 1) proposing the coordinate transformation to get the Hall rotary vector and 2) designing the Hall vector frequency tracking method to estimate the speed and position. First, the Hall vector which is related to the position is obtained by the coordinate transformation. Second, the synchronous frequency tracking filter (SFTF) is used to extract the fundamental waves which are sine function and cosine function of the position from the two orthogonal components of the Hall vector. The SFTF can eliminate the high-frequency interferences. Third, the arctan function is used to calculate the speed and position with extracted fundamental waves. The proposed method can improve estimation precision and reduce estimated error related to the inaccurate installation of Hall-effect sensors, which is parameter-independent and implemented easily. The effectiveness was verified by the experimental results on a turbo molecular pump.
机译:由于成本低和安装方便,双极霍尔效应传感器通常用于永磁同步电动机。通常,由于传感器的安装误差,速度和位置估计不准确。本文针对提高估计精度的两个关键挑战:1)提出坐标变换以获取霍尔旋转矢量,以及2)设计霍尔矢量频率跟踪方法以估计速度和位置。首先,通过坐标变换获得与位置有关的霍尔矢量。其次,同步频率跟踪滤波器(SFTF)用于从霍尔矢量的两个正交分量中提取基波,这些基波是位置的正弦函数和余弦函数。 SFTF可以消除高频干扰。第三,反正切函数用于通过提取的基波来计算速度和位置。该方法可以提高估计精度,减少与霍尔效应传感器安装不正确有关的估计误差,该方法与参数无关,易于实现。通过涡轮分子泵上的实验结果验证了有效性。

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