Bundle adjustment for 3-D motion and structure estimation from 2-D optical and sonar views

S. Negahdaripour, A. Taatian
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引用次数: 6

Abstract

Optical and sonar imaging system are routinely deployed for underwater search, inspection and scientific surveys of manmade and natural structures, etc. We have previously demonstrated that the integration of visual cues in optical and sonar images is an effective strategy to overcome certain shortcomings of each system alone, for 3-D reconstruction from 2-D images. In this work, we deal with the problem of structure from motion, in addressing the recovery of 3-D motion and scene structure from images taken in different poses relative to the scene. In particular, we explore the bundle adjustment formulation, where the estimation of motion and structure is carried out over all the data in a batch process. We analyze the 3-D reconstruction accuracy with computer generated noisy data with various number of points that are tracked and number of views. We also present results from an experiment with real data.
从二维光学和声纳视图中进行三维运动和结构估计的束调整
光学和声纳成像系统经常用于水下搜索、检查和科学调查人工和自然结构等。我们之前已经证明,在光学和声纳图像中集成视觉线索是一种有效的策略,可以克服每个系统单独的某些缺点,从二维图像进行三维重建。在这项工作中,我们处理来自运动的结构问题,解决了从相对于场景的不同姿势拍摄的图像中恢复3d运动和场景结构的问题。特别是,我们探索了束平差公式,其中运动和结构的估计是在批处理过程中对所有数据进行的。利用计算机生成的具有不同跟踪点数和不同视点数的噪声数据,分析了三维重建的精度。我们还给出了用真实数据进行的实验结果。
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