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基于灰度梯度和反正切函数拟合的亚像素边缘检测算法
引用本文:吴月波,徐晨,董蓉.基于灰度梯度和反正切函数拟合的亚像素边缘检测算法[J].电视技术,2015,39(22):6-9.
作者姓名:吴月波  徐晨  董蓉
作者单位:南通大学 电子信息学院 南通 226019,南通大学 电子信息学院 南通 226019
基金项目:国家自然科学基金(61401239);南通市科技项目(BK2014066);江苏省普通高校研究生科研创新计划资助项目(KYLX_1304);南通大学研究生科技创新计划项目资助(YKC14011)
摘    要:在数字图像处理和机器视觉中,边缘检测是一个基本问题和关键环节,因此,精确地检测图像边缘是非常必要的。本文提出了一种基于灰度梯度和反正切函数拟合的亚像素边缘检测算法。首先,通过Canny算子粗略提取输入图像的边缘;然后对初步得到的边缘像素逐点提取灰度梯度方向,以提取的梯度方向为坐标轴正方向建立灰度梯度直角坐标系;最后利用最小二乘法,采用反正切函数拟合图像边缘的灰度梯度,获得亚像素边缘位置。利用Microsoft Visual Studio 2008平台进行实验,结果表明:与基于小波变换及基于Zernike矩的亚像素边缘检测方法相比,本文所提算法定位精度较高,检测速度较快,能够更完整地检测出图像的平滑边缘。

关 键 词:亚像素边缘检测  灰度梯度  Canny算子  反正切函数  拟合
收稿时间:2015/4/19 0:00:00
修稿时间:2015/6/14 0:00:00

Sub-pixel Edge Detection Algorithm Baded On The Fitting Of Gray Gradient And Arctan Function
Affiliation:Nantong University,Nantong University
Abstract:In digital image processing and machine vision, edge detection is one of the fundamental problems and key links, therefore, it is very necessary to detect the image edge accurately. There proposes a sub-pixel edge detection algorithm which is based on the fitting of gray gradient and arctan function. First, the Canny operator is used to locate the input image edge roughly; then the gray gradient direction are extracted point by point using the preliminary edge pixels, and estabilish the rectangular coordinate system of gray gradient direction whose positive direction is the extracted gradient direction; finally, the sub-pixel edge location is obtained by the least square method using the fitting of arctan function on the gray gradient of the edge of the image. The experiment is provided to illustrate the effectiveness of the above algorithm compared with sub-pixel edge detection algorithm based on wavelet transform method and based on Zernike moments by Microsoft Visual Studio 2008 platform, the results show that this algorithm has higher positioning accuracy, faster detection speed, and it can detect a smooth edge of the image more perfectly.
Keywords:Sub-pixel edge detection  Gray gradient  Canny operator  Arctan function  Fitting
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