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Development of Absolute Magnetic Rotary Encoder with Eccentric Rotation

机译:偏心旋转绝对磁旋转编码器的研制

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To improve the resolution of a magnetic absolute encoder, we propose a new magnetic encoder with an eccentric structure. Since the proposed magnetic encoder consists of only one eccentrically rotating multi-pole magnet and four Hall elements, its structure is very simple and cost efficient. By calculating the absolute offset by combining the look-up table and least squares method, it is possible to calculate the absolute angle even when a multipolar magnet is used for resolution improvement. Furthermore, since the quadrature signal can be calculated, it is possible to configure the converter using the conventional method, and it is very versatile. Experimental results show that the proposed method can achieve both improvements of accuracy by increasing the number of pole pairs and calculation of absolute angle.
机译:为了提高磁性绝对值编码器的分辨率,我们提出了一种具有偏心结构的新型磁性编码器。由于所提出的磁性编码器仅由一个偏心旋转的多极磁体和四个霍尔元件组成,因此其结构非常简单且具有成本效益。通过结合查找表和最小二乘法来计算绝对偏移,即使在将多极磁体用于分辨率提高的情况下,也可以计算绝对角度。此外,由于可以计算出正交信号,因此可以使用常规方法来配置转换器,并且它非常通用。实验结果表明,该方法可以通过增加极对数和计算绝对角度来实现精度的提高。

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