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Self-Calibration-Based Approach to Critical Motion Sequences of Rolling-Shutter Structure from Motion

机译:基于自校准的卷帘门结构运动关键运动序列方法

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In this paper we consider critical motion sequences (CMSs) of rolling-shutter (RS) SfM. Employing an RS camera model with linearized pure rotation, we show that the RS distortion can be approximately expressed by two internal parameters of an imaginary camera plus one-parameter nonlinear transformation similar to lens distortion. We then reformulate the problem as self-calibration of the imaginary camera, in which its skew and aspect ratio are unknown and varying in the image sequence. In the formulation, we derive a general representation of CMSs. We also show that our method can explain the CMS that was recently reported in the literature, and then present a new remedy to deal with the degeneracy. Our theoretical results agree well with experimental results, it explains degeneracies observed when we employ naive bundle adjustment, and how they are resolved by our method.
机译:在本文中,我们考虑了卷帘快门(RS)SfM的关键运动序列(CMS)。使用具有线性化纯旋转的RS摄像机模型,我们表明RS畸变可以由假想摄像机的两个内部参数加上类似于镜头畸变的一参数非线性变换近似表示。然后,我们将问题重新定义为假想相机的自校准,其中其歪斜度和纵横比未知,并且在图像序列中有所变化。在公式中,我们推导出了CMS的一般表示。我们还表明,我们的方法可以解释文献中最近报道的CMS,然后提出一种应对退化的新疗法。我们的理论结果与实验结果非常吻合,它解释了当我们使用朴素束调整时观察到的简并性,以及如何通过我们的方法解决它们。

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