Approximation implementation approach for Gaussian filtering in roundness measurement

Xu Jingbo, Liu Bo, Lin Haijun, Liang Jianxin
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引用次数: 2

Abstract

Gaussian filter acts as the filter for roundness signal processing and a new implementation approach for Gaussian filter is presented. Based on the theory of B-spline function, the variational principle with the tension condition and the convolution characteristic of Gaussian filter with small scale, the approximation filter of Gaussian filter is concluded, which has the amplitude characteristic deviation from Gaussian filter less than 1% and the zero-phase-shift characteristic. The algorithm for the approximation filter consists of the zero-phase-shift filtering and the weighing filtering which loop two times. The algorithm is both simply in its structure and high in its filtering efficiency. The method of cycle continuation solves the edge effects of digital filtering based on the periodicity of the roundness measurement signal. The approximation filter is also efficient and accurate for the implementation of Gaussian filter in the application of roundness measurement.
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圆度测量中高斯滤波的逼近实现方法
采用高斯滤波器作为圆度信号处理的滤波器,提出了一种新的高斯滤波器实现方法。基于b样条函数理论、张力条件下的变分原理和高斯滤波器的小尺度卷积特性,推导出高斯滤波器的近似滤波器,其幅值特性与高斯滤波器的偏差小于1%,且具有零相移特性。近似滤波器的算法由零相移滤波和两次循环的加权滤波组成。该算法结构简单,滤波效率高。周期延拓方法解决了基于圆度测量信号周期性的数字滤波边缘效应问题。近似滤波器对于实现高斯滤波器在圆度测量中的应用也具有较高的效率和准确性。
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