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Variational Stereo Imaging of Oceanic Waves With Statistical Constraints

机译:具有统计约束的海浪变体立体成像

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摘要

An image processing observational technique for the stereoscopic reconstruction of the waveform of oceanic sea states is developed. The technique incorporates the enforcement of any given statistical wave law modeling the quasi-Gaussianity of oceanic waves observed in nature. The problem is posed in a variational optimization framework, where the desired waveform is obtained as the minimizer of a cost functional that combines image observations, smoothness priors and a weak statistical constraint. The minimizer is obtained by combining gradient descent and multigrid methods on the necessary optimality equations of the cost functional. Robust photometric error criteria and a spatial intensity compensation model are also developed to improve the performance of the presented image matching strategy. The weak statistical constraint is thoroughly evaluated in combination with other elements presented to reconstruct and enforce constraints on experimental stereo data, demonstrating the improvement in the estimation of the observed ocean surface.
机译:开发了用于海洋海态波形的立体重构的图像处理观测技术。该技术结合了任何给定的统计波定律的执行,该定律对自然界中观察到的海浪的准高斯建模。该问题存在于变分优化框架中,在该框架中,所需的波形作为结合了图像观察,平滑先验和弱统计约束的成本函数的最小化器而获得。最小化器是通过在成本函数的必要最优方程上组合梯度下降和多网格方法而获得的。还开发了鲁棒的光度误差标准和空间强度补偿模型,以改善所提出的图像匹配策略的性能。弱统计约束条件与其他提出的要素一起进行了彻底评估,以重构和加强对实验立体数据的约束条件,从而证明对观测海洋表面的估计有所改进。

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