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Optimal-arrangement-based four-scanning-heads error separation technique for self-calibration of angle encoders

机译:基于最佳布置的四扫描头误差分离技术,用于角度编码器的自校准

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摘要

Conventional methods for the calibration of angle encoders typically only consider the graduation error of the encoder's circular scale. However, the radial motion of the circular scale during its rotation, due to its eccentricity and the axis of rotation radial error motion, can also introduce noticeable errors to the angle measurement in most practical applications. Based on the analysis of the influence of radial motion, an optimal-arrangement-based four-scanning-heads error separation technique for in situ self-calibration of angle encoders is presented. This Fourier-based technique uses the basic self-calibration model to measure the first-order Fourier component of the encoder error which includes the contribution of eccentricity. Meanwhile, the separation technique is utilized to separate the residual Fourier components of the graduation error from the measurement deviation due to radial error motion. The effect of the scanning heads' angular position errors on the calibration results is discussed. Optimal arrangements of the four heads are achieved to avoid the suppression of the Fourier components, and reduce the propagation of errors. Numerical results and experimental comparisons demonstrate the effectiveness of the proposed method. Moreover, this technique can also be used for measuring the spindle radial error motion for some users.
机译:校准角度编码器的常规方法通常仅考虑编码器循环尺度的刻度误差。然而,由于其偏心和旋转径向误差运动,圆形尺度在其旋转期间的径向运动也可以在大多数实际应用中引入明显的误差。基于对径向运动的影响的分析,提出了一种基于最佳布置的四扫描头误差分离技术,用于原位的角度编码器的自校准。这种基于傅立叶的技术使用基本的自校准模型来测量编码器错误的一阶傅里叶组件,包括偏心率的贡献。同时,使用径向误差运动引起的分离技术将梯度误差的残余傅里叶组件分离。讨论了扫描头的角度位置误差对校准结果的影响。实现了四个头的最佳布置以避免抑制傅立叶组件,并降低误差的传播。数值结果和实验比较证明了该方法的有效性。此外,该技术还可用于测量某些用户的主轴径向误差运动。

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