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Fast Projective Image Rectification for Planar Objects with Manhattan Structure

机译:具有曼哈顿结构的平面物体的快速投影图像校正

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摘要

This paper presents a method for metric rectification of planar objects that preserves angles and length ratios. Aninner structure of an object is assumed to follow the laws of Manhattan World i.e. the majority of line segments arealigned with two orthogonal directions of the object. For that purpose we introduce the method that estimates theposition of two vanishing points corresponding to the main object directions. It is based on an original optimizationfunction of segments that estimates a vanishing point position. For calculation of the rectification homography with twovanishing points we propose a new method based on estimation of the camera rotation so that the camera axis isperpendicular to the object plane.The proposed method can be applied for rectification of various objects such as documents or building facades. Alsosince the camera rotation is estimated the method can be employed for estimation of object orientation (for example,during a surgery with radiograph of osteosynthesis implants). The method was evaluated on the MIDV-500 datasetcontaining projectively distorted images of documents with complex background. According to the experimental resultsan accuracy of the proposed method is better or equal to the-state-of-the-art if the background occupies no more than halfof the image. Runtime of the method is around 3ms on core i7 3610qm CPU.
机译:本文提出了一种保留角度和长度比的平面物体的度量校正方法。一个 假定对象的内部结构遵循曼哈顿世界的定律,即大多数线段为 与对象的两个正交方向对齐。为此,我们介绍了估算 与主要物体方向相对应的两个消失点的位置。它基于原始的优化 估计消失点位置的线段的功能。用于计算具有两个的单应性 消失点,我们提出了一种基于摄像机旋转估计的新方法,以使摄像机轴 垂直于对象平面。 所提出的方法可以应用于各种物体的校正,例如文件或建筑物外墙。还 由于估算了相机的旋转角度,因此该方法可用于估算物体的方向(例如, 用骨植入植入物的X光片进行手术期间)。该方法在MIDV-500数据集上进行了评估 包含背景复杂的文档的投影失真图像。根据实验结果 如果背景所占比例不超过一半,则所提出方法的精度将优于或等于最新技术 图片。在核心i7 3610qm CPU上,该方法的运行时间约为3毫秒。

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