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由单个韦根脉冲产生的线性定位系统中的磁性参考标记。

Magnetic Reference Mark in a Linear Positioning System Generated by a Single Wiegand Pulse.

作者信息

Lien Hung-Lin, Chang Jen-Yuan

机构信息

Department of Power Mechanical Engineering, National Tsing Hua University, Hsinchu 30013, Taiwan.

出版信息

Sensors (Basel). 2022 Apr 21;22(9):3185. doi: 10.3390/s22093185.

Abstract

A Wiegand sensor is composed of a strip of Wiegand wire and a pick-up coil. The research presented in this paper examines and characterizes the fast magnetization reversal in a Wiegand wire, which leads to changes in magnetic flux density in its pick-up coil to produce the so-called Wiegand pulse to be used as a reference mark in a linear positioning system. It was observed in this research that the magnitude and duration of the pulse voltage were independent of driving frequency, indicating that Wiegand effect sensors could be ideal for use as zero-speed transducers. The repeatability of the Wiegand pulse was found to vary with different magnetic flux intensities of external magnetic field, as well as the angle between the magnetic induction line and the Wiegand wire. Through calibrated experimental and numerical parametric studies, the mechanism for producing repeatable Wiegand pulses to be used as a reference mark for precision liner positioning systems was revealed, which represents the novelty of this research. On the basis of this mechanism, the optimal design combination of the Wiegand sensor's position with respect to the magnetization source can be obtained. Utilizing commercially available Wiegand sensors, it was demonstrated in this research that with a Wiegand pulse serving as a magnetic reference mark, positioning repeatability of 0.3 um could be achieved, which is on the same order as optical scales. The work presented in this research has engineering implications as well as offering scientific insights into magnetization mechanisms for generating enough magnetic remanence to produce a Barkhausen jump, resulting in repeatable Wiegand for use as a reference mark in a linear positioning system.

摘要

维根德传感器由一条维根德丝和一个拾波线圈组成。本文所呈现的研究对维根德丝中的快速磁化反转进行了研究和表征,这种反转会导致其拾波线圈中的磁通密度发生变化,从而产生所谓的维根德脉冲,用作线性定位系统中的参考标记。在本研究中观察到,脉冲电压的幅度和持续时间与驱动频率无关,这表明维根德效应传感器可能是用作零速传感器的理想选择。发现维根德脉冲的重复性会随着外部磁场的不同磁通强度以及磁感应线与维根德丝之间的夹角而变化。通过校准的实验和数值参数研究,揭示了产生可重复的维根德脉冲以用作精密线性定位系统参考标记的机制,这代表了本研究的新颖之处。基于这一机制,可以获得维根德传感器相对于磁化源的最佳设计组合。利用市售的维根德传感器,本研究表明,以维根德脉冲作为磁参考标记,可以实现0.3微米的定位重复性,这与光学刻度处于同一量级。本研究中呈现的工作具有工程意义,同时也为磁化机制提供了科学见解,以产生足够的剩磁来产生巴克豪森跳跃,从而产生可重复的维根德脉冲用作线性定位系统中的参考标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7058/9105171/15d75754c2b9/sensors-22-03185-g001.jpg

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