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Adaptive correction and look-up table based interpolation of quadrature encoder signals

机译:基于自适应校正和查找表的正交编码器信号插值

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摘要

This paper presents a new method to increase the available measurement resolution of quadrature encoder signals. The proposed method features an adaptive signal correction phase and an interpolation phase. Typical imperfections in the encoder signals including amplitude difference, mean offsets and quadrature phase shift errors are corrected using recursive least squares with exponential forgetting and resetting. Interpolation of the corrected signals are accomplished by a quick access look-up table formed offline to satisfy a linear mapping from available sinusoidal signals to higher order sinusoids. The position information can be derived from the conversion of the high-order sinusoids to binary pulses. With the presented method, 10nm resolution is achieved with an encoder having 1μm of original resolution. Further increase in resolution can also be satisfied with minimizing electrical noises. Experiment results demonstrating the effectiveness of the proposed method for a single axis and two axis slider systems are given. Copyright © 2012 by ASME.
机译:本文提出了一种提高正交编码器信号可用测量分辨率的新方法。所提出的方法具有自适应信号校正阶段和内插阶段的特征。编码器信号中的典型缺陷(包括幅度差,平均偏移和正交相移误差)使用具有指数遗忘和复位功能的递归最小二乘法进行校正。通过离线形成的快速访问查找表来完成校正信号的插值,以满足从可用正弦信号到高阶正弦信号的线性映射。位置信息可以从高阶正弦曲线到二进制脉冲的转换中得出。使用所提出的方法,使用具有1μm原始分辨率的编码器可实现10nm分辨率。通过最小化电噪声也可以满足分辨率的进一步提高。实验结果证明了该方法对单轴和两轴滑块系统的有效性。 ASME版权所有©2012。

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