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Key Technologies of Image Measurement for Curve Accurate Grinding

机译:曲线精确磨削的图像测量关键技术

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Image analysis was used to evaluate the curve grinding process. The measurement system organization and its principle of operation were introduced. Some key technologies that influence the system precision were also studied in details. Real-time image of work piece and wheel grinding can be gathered while using CCD camera. For image de-noising, a kind of wavelet threshold function was presented to calculate the new wavelet coefficients. Local threshold algorithm was used to compute different scale threshold, another threshold is suggested when MSE is minimum. Image signals are reconstructed through invert discrete wavelet transformation with the new wavelet coefficients. For the purpose of increasing the measurement precision, a closed mathematical model of sub-pixel edge detection operator was founded according to the gray moment operator's invariant characteristics and Tabatabai's first three sample gray moments. An application of system validity and the comparison results of work piece were also given. From experiments it can be said that the proposed method in this paper is effective, and its detection precision and results are reasonable.
机译:图像分析用于评估曲线磨削过程。介绍了测量系统的组成及其工作原理。还详细研究了一些影响系统精度的关键技术。使用CCD摄像机可以收集工件和砂轮的实时图像。对于图像去噪,提出了一种小波阈值函数来计算新的小波系数。使用局部阈值算法来计算不同的尺度阈值,当MSE最小时建议使用另一个阈值。通过使用新的小波系数进行逆离散小波变换来重建图像信号。为了提高测量精度,根据灰度矩算子的不变性和Tabatabai的前三个样本灰度矩,建立了亚像素边缘检测算子的封闭数学模型。给出了系统有效性的应用以及工件的比较结果。从实验可以看出,本文提出的方法是有效的,检测精度和结果合理。

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