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Phase demodulation of magnetic GMR signal for virtual sensing applications by using hilbert transform

机译:使用希尔伯特变换对用于虚拟传感应用的GMR磁信号进行相位解调

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GMR (Giant MagnetoResistance) sensors, which are used in conjunction with magnetic encoders (magnetic pole wheels), have a huge number of applications in automotive and machine industry, where they are used to compute the rotational speed of rotating parts like wheels and shafts. In this paper, we present an analytical model of magnetic pole wheel signal as it is sensed by a GMR sensor. Experimental measurements are performed to check the validity of the mathematical model. Furthermore, we present a novel digital signal processing technique, which incorporates the Hilbert transformer to phase demodulate this GMR signals to compute high resolution instantaneous position and speed information. A frequency domain analysis is then deployed to analyze the signal for any low frequency vibrations present in the rotating part.
机译:与磁编码器(磁极轮)结合使用的GMR(巨磁阻)传感器在汽车和机械工业中有大量应用,用于计算车轮和轴等旋转零件的转速。在本文中,我们介绍了一个磁极轮信号的解析模型,该信号由GMR传感器感测。进行实验测量以检查数学模型的有效性。此外,我们提出了一种新颖的数字信号处理技术,该技术结合了希尔伯特变压器来对该GMR信号进行相位解调,从而计算出高分辨率的瞬时位置和速度信息。然后部署频域分析,以分析信号中是否存在旋转部件中的任何低频振动。

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