Optical Lens Edge Detection Method Based Coaxial Alignment Micro Assembly

Lei Wang, Zhijing Zhang, Dongsheng Zhu
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Abstract

Optical lens assemblies are key to affecting lens accuracy. The coaxial alignment could improve the accuracy of lens assembly effectively in automatic assembly system. But it was difficult to capture the full edge of the lens in one image because of the limit of the CCD camera field of view and the image edge of the lens is not sharp. The purpose of this paper is to propose an edge detection method of optical lens based on Holistically-Nested Edge Detection (HED) for a micro-assembly system with coaxial alignment function. First, the edge of the optical lens is got by HED method, and then the thick edge of the detected optical lens is refined image and the pixel points in the middle position of the thick edge of the recognized image is extracted. Finally, the least square method is used to fit the edge image of the lens. The results of comparative experimental shows that this method which can extract edge of the optical lens image automatically is more robust and more accurate than the previous edge recognition methods.
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基于同轴对准微装配的光学透镜边缘检测方法
光学透镜组件是影响透镜精度的关键。在自动装配系统中,同轴对准可以有效地提高透镜装配精度。但由于CCD相机视场的限制和镜头的图像边缘不清晰,很难在一张图像中捕捉到镜头的全部边缘。针对具有同轴对准功能的微装配系统,提出了一种基于整体嵌套边缘检测(HED)的光学透镜边缘检测方法。首先利用HED方法得到光学透镜的边缘,然后对检测到的光学透镜的厚边缘进行细化成像,提取识别图像中厚边缘中间位置的像素点。最后,利用最小二乘法对镜头边缘图像进行拟合。对比实验结果表明,该方法能够自动提取光学镜头图像的边缘,比以往的边缘识别方法具有更强的鲁棒性和准确性。
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