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A novel multi-scale edge detection technique based on wavelet analysis with application in multiphase flows

机译:基于小波分析的多尺度边缘检测新技术及其在多相流中的应用

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摘要

A novel non-linear weighted statistical algorithm for multi-scale edge detection of gray image based on wavelet analysis is proposed to extract interface in multiphase flows. In this method, local modulus maximum of gray gradient along the phase angle direction is regarded as the possible edge (interface) of an image. A two-dimensional discrete Gaussian function with zero average value is adopted as smoothening filter. The influences of filter length, scale and threshold on the extracted edges are discussed in detail. In order to realize multi-scale detection, the local maximums of the wavelet transform modulus calculated under a series of the wavelet transform scales are used to detect the possible edge (interface) of an image. A modified Gaussian function is suggested to weight non-linearly those possible edges (interfaces) detected on different scales and a statistical function is proposed to synthesize the possibility of each pixel being edge over all scales. Compared with Canny operator, this new algorithm can extract the edge perfectly even with strong noise and light reflection, which shows the potential to extract the interface in multiphase flows.
机译:提出了一种基于小波分析的灰度图像多尺度边缘检测的非线性加权统计算法,以提取多相流中的界面。在该方法中,将沿着相角方向的灰度梯度的局部模量最大值视为图像的可能边缘(界面)。平均值为零的二维离散高斯函数被用作平滑滤波器。详细讨论了滤波器长度,比例和阈值对提取边缘的影响。为了实现多尺度检测,在一系列小波变换尺度下计算出的小波变换模量的​​局部最大值被用于检测图像的可能边缘(界面)。建议使用改进的高斯函数对在不同比例尺上检测到的那些可能的边缘(界面)进行非线性加权,并建议使用统计函数来合成每个像素在所有比例尺上都是边缘的可能性。与Canny算子相比,即使在强噪声和强光反射的情况下,该新算法也可以完美地提取边缘,这显示了在多相流中提取界面的潜力。

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