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Mosaicking synthetic aperture sonar images using dynamic constraints

机译:使用动态约束镶嵌合成孔径声纳图像

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Precise mosaicking of underwater images is essential for Mine Counter-Measure (MCM) operations. Inaccuracies in the navigation of the Autonomous Underwater Vehicles (AUV) that acquire the images may complicate the construction of the mosaics and cause ambiguities in the total number of targets and their positions. In this paper a method for automatically mosaicking a set of partially overlapping image tiles is presented. The method uses a robust implementation of image correlation that can cope with different illumination directions. Constraints to the relative positions and orientations of pairs of overlapping tiles are derived from the local correlations, and later used to drive a global optimization method that models the constraints as mechanical forces. Modeling the tiles as rigid rectangular plates, the dynamic evolution of the mechanical system will converge to an equilibrium configuration that corresponds to the optimal solution to the mosaic construction problem.
机译:水下图像的精确摩托车对于矿井反措施(MCM)操作至关重要。获取图像的自主水下车辆(AUV)导航中的不准确性可能使马赛克的建设复杂化并导致目标总数及其职位的含糊不清。在本文中,呈现了一种用于自动拼接一组部分重叠的图像瓦片的方法。该方法使用能够应对不同的照明方向来应对的图像相关的鲁棒实现。对重叠瓦片对的相对位置和取向的约束来自局部相关性,后来用于驱动模拟约束作为机械力的全局优化方法。将瓷砖造型为刚性矩形板,机械系统的动态演化将收敛到平衡配置,该配置对应于对马赛克施工问题的最佳解决方案。

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