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RECOGNITION USING REGION CORRESPONDENCES

机译:使用区域通信进行识别

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Recognition systems attempt to recover information about the identity of observed objects and their location in the environment. A fundamental problem in recognition is pose estimation. This is the problem of using a correspondence between some portions of an object model and some portions of an image to determine whether the image contains an instance of the object, and, in case it does, to determine the transformation that relates the model to the image. The current approaches to this problem are divided into methods that use ''global'' properties of the object (e.g., centroid and moments of inertia) and methods that use ''local'' properties of the object (e.g., corners and line segments). Global properties are sensitive to occlusion and, specifically, to self occlusion. Local properties are difficult to locate reliably, and their matching involves intensive computation. We present a novel method for recognition that uses region information. In our approach the model and the image are divided into regions. Given a match between subsets of regions (without any explicit correspondence between different pieces of the regions) the alignment transformation is computed. The method applies to planar objects under similarity, affine, and projective transformations and to projections of 3-D objects undergoing affine and projective transformations. The new approach combines many of the advantages of the previous two approaches, while avoiding some of their pitfalls. Like the global methods, our approach makes use of region information that reflects the true shape of the object. But like local methods, our approach can handle occlusion. [References: 53]
机译:识别系统尝试恢复有关被观察对象的身份及其在环境中位置的信息。识别中的一个基本问题是姿势估计。这是一个问题,即使用对象模型的某些部分与图像的某些部分之间的对应关系来确定图像是否包含对象的实例,并且在确定的情况下,确定将模型与对象关联的转换。图片。解决该问题的当前方法分为使用对象的“全局”属性(例如,质心和惯性矩)的方法和使用对象的“局部”属性(例如,角和线段)的方法。 )。全局属性对遮挡敏感,尤其是对自遮挡敏感。局部属性很难可靠地定位,并且它们的匹配涉及大量的计算。我们提出了一种使用区域信息进行识别的新颖方法。在我们的方法中,模型和图像被划分为多个区域。给定区域子集之间的匹配(区域的不同部分之间没有任何明确的对应关系),将计算对齐变换。该方法适用于相似,仿射和投影变换下的平面对象,以及经过仿射和投影变换的3D对象的投影。新方法结合了前两种方法的许多优点,同时避免了某些陷阱。像全局方法一样,我们的方法利用反映对象真实形状的区域信息。但是像局部方法一样,我们的方法可以处理遮挡。 [参考:53]

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