Angle measurement technology based on magnetization vector for narrow space applications

Yinguo Huang , Shiyu Zhang , Le Gao , Yelong Zheng
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引用次数: 4

Abstract

With the wide application of laser in the field of skin plastic surgery, micro laser galvanometer scanner has made great progress in this field with its portability. However, the measurement method used to measure the deflection angle of laser galvanometer in the narrow space of scanner with high precision remains to be studied. In this paper, an angle measurement method based on magnetic field is proposed, and the effect of the shapes of permanent magnets (PMs) on the measurement is studied by theoretical and experimental study under the condition that the maximum available space for the PMs is a 10 mm side cube. An angle measuring experimental device is set up, and the contrast experiment is carried out with different PMs which are the same as simulation. The experimental results show that cylindrical PM is more suitable than other PMs, which is consistent with the simulation results, and the maximum nonlinearity error is 0.562%. This method has the advantages of small volume, non-contact measurement, small moment of inertia, good dynamic response and no external excitation for the PMs, so it has a broad application prospect in micro laser galvanometer scanner.

基于磁化矢量的窄空间角度测量技术
随着激光在皮肤整形领域的广泛应用,微型激光振镜扫描仪以其便携性在该领域取得了长足的进步。然而,如何在扫描器狭窄空间内高精度地测量激光振镜的偏转角还有待研究。本文提出了一种基于磁场的角度测量方法,并在永磁体最大可用空间为10 mm方立方体的条件下,通过理论和实验研究了永磁体形状对角度测量的影响。搭建了角度测量实验装置,用与仿真结果相同的不同pm进行了对比实验。实验结果表明,圆柱形永磁调速比其他形式的永磁调速更合适,其最大非线性误差为0.562%,与仿真结果一致。该方法具有体积小、非接触式测量、转动惯量小、动态响应好、不受外界激励等优点,在微激光振镜扫描仪中具有广阔的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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