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Robust feature estimation by non-rigid hierarchical image registration and its application in disparity measurement

机译:非刚性分层图像配准的鲁棒特征估计及其在视差测量中的应用

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Industries are moving towards automation in order to increase productivity and ensure quality. Variety of electronic and electromagnetic systems are being employed to assist human operator in fast and accurate quality inspection of products. Majority of these systems are equipped with cameras and rely on diverse image processing algorithms. Information is lost in 2D image, therefore acquiring accurate 3D data from 2D images is an open issue. FAST, SURF and SIFT are well-known spatial domain techniques for features extraction and henceforth image registration to find correspondence between images. The efficiency of these methods is measured in terms of the number of perfect matches found. A novel fast and robust technique for stereo-image processing is proposed. It is based on non-rigid registration using modified normalized phase correlation. The proposed method registers two images in hierarchical fashion using quad-tree structure. The registration process works through global to local level resulting in robust matches even in presence of blur and noise. The computed matches can further be utilized to determine disparity and depth for industrial product inspection. The same can be used in driver assistance systems. The preliminary tests on Middlebury dataset produced satisfactory results. The execution time for a 413 x 370 stereo-pair is 500ms approximately on a low cost DSP.
机译:工业正朝着自动化发展,以提高生产率并确保质量。人们采用各种电子和电磁系统来帮助操作员快速,准确地检查产品质量。这些系统大多数都配备了摄像头,并依赖于各种图像处理算法。信息在2D图像中丢失,因此从2D图像中获取准确的3D数据是一个未解决的问题。 FAST,SURF和SIFT是众所周知的空间特征技术,用于特征提取和今后的图像配准,以查找图像之间的对应关系。这些方法的效率是根据找到的完美匹配数来衡量的。提出了一种新颖,快速,鲁棒的立体图像处理技术。它基于使用修改后的归一化相位相关性的非刚性配准。所提出的方法使用四叉树结构以分级方式注册两个图像。配准过程贯穿全局到局部,即使在出现模糊和噪点的情况下也能实现可靠的匹配。计算出的匹配可以进一步用于确定工业产品检查的视差和深度。可以在驾驶员辅助系统中使用相同的功能。对Middlebury数据集的初步测试产生了令人满意的结果。在低成本DSP上,413 x 370立体声对的执行时间约为500毫秒。

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