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Correspondence-Free Determination of the Affine Fundamental Matrix

机译:仿射基本矩阵的无对应确定

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Fundamental matrix estimation is a central problem in computer vision and forms the basis of tasks such as stereo imaging and structure from motion. Existing algorithms typically analyze the relative geometries of matched feature points identified in both projected views. Automated feature matching is itself a challenging problem. Results typically have a large number of false matches. Traditional fundamental matrix estimation methods are very sensitive to matching errors, which led naturally to the application of robust statistical estimation techniques to the problem. In this work, an entirely novel approach is proposed to the fundamental matrix estimation problem. Instead of analyzing the geometry of matched feature points, the problem is recast in the frequency domain through the use of integral projection, showing how this is a reasonable model for orthographic cameras. The problem now reduces to one of identifying matching lines in the frequency domain which, most importantly, requires no feature matching or correspondence information. Experimental results on both real and synthetic data are presented that demonstrate the algorithm is a practical technique for fundamental matrix estimation. The behavior of the proposed algorithm is additionally characterized with respect to input noise, feature counts, and other parameters of interest
机译:基本矩阵估计是计算机视觉中的核心问题,它构成了诸如运动的立体成像和结构之类的任务的基础。现有算法通常分析在两个投影视图中标识的匹配特征点的相对几何形状。自动特征匹配本身就是一个具有挑战性的问题。结果通常会有大量错误匹配。传统的基本矩阵估计方法对匹配误差非常敏感,这自然导致将健壮的统计估计技术应用于该问题。在这项工作中,提出了一种全新的方法来解决基本矩阵估计问题。通过使用积分投影,可以在频域中重现问题,而不是分析匹配特征点的几何形状,从而说明这是正交摄影机的合理模型。现在,问题减少到识别频域中的匹配线之一,最重要的是,不需要特征匹配或对应信息。实验结果表明,该算法是基本矩阵估计的一种实用技术。相对于输入噪声,特征计数和其他感兴趣的参数,还对所提出算法的行为进行了表征。

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