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首页> 外文期刊>IEEE Transactions on Pattern Analysis and Machine Intelligence >Affine reconstruction of curved surfaces from uncalibrated views of apparent contours
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Affine reconstruction of curved surfaces from uncalibrated views of apparent contours

机译:从未经校正的外观轮廓仿射重建曲面

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摘要

In this paper, we consider uncalibrated reconstruction of curved surfaces from apparent contours. Since apparent contours are not fixed features (viewpoint independent), we cannot directly apply the recent results of the uncalibrated reconstruction from fixed features. We show that, nonetheless, curved surfaces can be reconstructed up to an affine ambiguity from their apparent contours viewed from uncalibrated cameras with unknown linear translations. Furthermore, we show that, even if the reconstruction is nonmetric (non-Euclidean), we can still extract useful information for many computer vision applications just from the apparent contours. We first show that if the camera motion is linear translation (but arbitrary direction and magnitude), the epipolar geometry can be recovered from the apparent contours without using any optimization process. The extracted epipolar geometry is next used for reconstructing curved surfaces from the deformations of the apparent contours viewed from uncalibrated cameras. The result is applied to distinguishing curved surfaces from fixed features in images. It is also shown that the time-to-contact to the curved surfaces can be computed from simple measurements of the apparent contours.
机译:在本文中,我们考虑了从明显轮廓对曲面进行未校准的重建。由于外观轮廓不是固定特征(与视点无关),因此我们无法直接应用来自固定特征的未校准重建的最新结果。我们表明,尽管如此,曲面仍可以根据从具有未知线性平移的未经校准的摄像头观察到的明显轮廓来重建至仿射歧义。此外,我们表明,即使重建是非度量的(非欧几里得),我们仍然可以仅从表面轮廓提取许多计算机视觉应用的有用信息。我们首先表明,如果摄像机运动为线性平移(但方向和幅度任意),则无需使用任何优化过程即可从视线轮廓恢复对极几何形状。提取的对极几何形状接下来将用于根据从未经校准的摄像机观察到的明显轮廓的变形来重建曲面。结果适用于区分曲面和图像中的固定特征。还表明,可以通过对表观轮廓的简单测量来计算与曲面的接触时间。

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