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机构地区:[1]内蒙古科技大学信息工程学院,内蒙古包头014010
出 处:《电测与仪表》2014年第18期25-29,共5页Electrical Measurement & Instrumentation
摘 要:为解决工业中对指针式仪表的自动检定,针对自动检定系统中所涉及的图像边缘检测技术难点,分析了现有传统算法的不足之处,提出一种有效的基于提升小波变换的边缘检测算法。该算法利用提升小波变换尺度的低通作用,避免受高频噪声影响,在传统边缘检测算法的基础上,提取低频轮廓。利用小波系数的方向性,结合方向性边缘检测算子,获得高频边缘信息,最后利用小波重构获得准确清晰的图像边缘,为后续Hough变换准确的提取指针提供了有利保障。实验结果表明,该算法得到的图像边缘较传统Canny算法更清晰准确,无虚假边缘,应用于仪表自动检测系统中是可行的。In order to solve the industry's automatic verification of pointer instrument, aiming at the technical difficulties of the image edge detection involved in the pointer instrument automatic detection system, the shortcomings of existing traditional algorithms will be analyzed, and an effective edge detection algorithm based on lifting freque freque wavelet transform will be p in this paper. At first the algorithm will avoid being affected by high- ncy noise using low-pass effect of the lifting wavelet transform scale, and will be adopted to extract low- ncy contour based on the algorithm of traditional edge detection. Using the directional of wavelet coefficients and combined with directional edge detection operator, the high-frequency edge information will be obtained. Finally, the lifting wavelet inverse transform is used to get clear and precise edge of image and it will provid a favorable security for the extraction of accurate pointer using the Hough transform. Experiment results show that the image edge detected by p algorithm. Moreover, there is no feasible. algorithm algorithm will be more clear and accurate than that by traditional Canny false edge, and the application of the algorithm in automatic detection system is
关 键 词:指针式仪表 自动检定系统 提升小波变换 边缘检测 低通作用 小波系数方向性
分 类 号:TM93[电气工程—电力电子与电力传动]
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