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Sequential Reconstruction Segment-Wise Feature Track and Structure Updating Based on Parallax Paths

机译:基于视差路径的序列重构分段明智特征跟踪与结构更新

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This paper presents a novel method for multi-view sequential scene reconstruction scenarios such as in aerial video, that exploits the constraints imposed by the path of a moving camera to allow for a new way of detecting and correcting inaccuracies in the feature tracking and structure computation processes. The main contribution of this paper is to show that for short, planar segments of a continuous camera trajectory, parallax movement corresponding to a viewed scene point should ideally form a scaled and translated version of this trajectory when projected onto a parallel plane. This creates two constraints, which differ from those of standard factorization, that allow for the detection and correction of inaccurate feature tracks and to improve scene structure. Results are shown for real and synthetic aerial video and turntable sequences, where the proposed method was shown to correct outlier tracks, detect and correct tracking drift, and allow for a novel improvement of scene structure, additionally resulting in an improved convergence for bundle adjustment optimization.
机译:本文提出了一种新的方法,例如在航空视频中的多视图顺序场景重建场景,该方法利用了移动摄像机的路径所施加的约束,从而为检测和校正特征跟踪和结构计算中的不准确之处提供了一种新方法。流程。本文的主要贡献在于,对于连续的相机轨迹的短而平坦的部分,当投影到平行平面上时,与所观察的场景点相对应的视差运动在理想情况下应形成该轨迹的缩放和平移版本。这会产生两个不同于标准因式分解的约束,这些约束允许检测和校正不正确的特征轨迹并改善场景结构。显示了真实和合成航空视频和转盘序列的结果,其中显示了所提出的方法可以纠正异常轨道,检测和纠正跟踪漂移,并可以对场景结构进行新颖的改进,此外还可以改善束调整的收敛性。

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