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An Affine Invariant Interest Point Detector

机译:一个仿射不变的兴趣点探测器

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This paper presents a novel approach for detecting affine invariant interest points. Our method can deal with significant affine transformations including large scale changes. Such transformations introduce significant changes in the point location as well as in the scale and the shape of the neighbourhood of an interest point. Our approach allows to solve for these problems simultaneously. It is based on three key ideas: 1) The second moment matrix computed in a point can be used to normalize a region in an affine invariant way (skew and stretch). 2) The scale of the local structure is indicated by local extrema of normalized derivatives over scale. 3). An affine-adapted Harris detector determines the location of interest points. A multi-scale version of this detector is used for initialization. An iterative algorithm then modifies location, scale and neighbourhood of each point and converges to affine invariant points. For matching and recognition, the image is characterized by a set of affine invariant points; the affine transformation associated with each point allows the computation of an affine invariant descriptor which is also invariant to affine illumination changes. A quantitative comparison of our detector with existing ones shows a significant improvement in the presence of large affine deformations. Experimental results for wide baseline matching show an excellent performance in the present of large perspective transformations including significant scale changes. Results for recognition are very good for a database with more than 5000 images.
机译:本文介绍了一种检测仿射不变兴趣点的新方法。我们的方法可以处理显着的仿射变换,包括大规模变化。这种变换在点位置和兴趣点附近的规模和形状中引入了显着变化。我们的方法可以同时解决这些问题。它基于三个关键的想法:1)在一点中计算的第二矩矩阵可用于以仿射不变的方式(歪斜和拉伸)正常化区域。 2)局部结构的规模由局部极值衍生物的局部极值在规模上表明。 3)。仿射适应的哈里斯探测器确定了感兴趣点的位置。该检测器的多尺度版本用于初始化。然后,迭代算法修改每个点的位置,比例和邻域并收敛到仿射不变点。对于匹配和识别,图像的特征在于一组仿射不变点;与每个点相关联的仿射变换允许计算仿射不变描述符,该描述符也不变地仿射照明变化。与现有的检测器的定量比较显示出大型仿射变形存在的显着改善。宽基线匹配的实验结果表明,在具有显着规模变化的大型透视变换的目前具有出色的性能。识别结果对于具有超过5000个图像的数据库非常好。

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