A Variational Wave Acquisition Stereo System for the 3-D Reconstruction of Oceanic Sea States

Guillermo Gallego, A. Yezzi, F. Fedele, A. Benetazzo
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引用次数: 4

Abstract

We propose a novel remote sensing technique that infers the three-dimensional wave form and radiance of oceanic sea states via a variational stereo imagery formulation. In this setting, the shape and radiance of the wave surface are minimizers of a composite cost functional which combines a data fidelity term and smoothness priors on the unknowns. The solution of a system of coupled partial differential equations derived from the cost functional yields the desired ocean surface shape and radiance. The proposed method is naturally extended to study the spatiotemporal dynamics of ocean waves, and applied to three sets of video data. Statistical and spectral analysis are carried out. The results shows evidence of the fact that the omni-directional wavenumber spectrum S(k) of the reconstructed waves decays as k−2.5 in agreement with Zakharov’s theory (1999). Further, the three-dimensional spectrum of the reconstructed wave surface is exploited to estimate wave dispersion and currents.
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一种用于海洋海况三维重建的变分波采集立体系统
我们提出了一种新的遥感技术,通过变分立体图像公式来推断海洋海况的三维波形和辐射。在这种情况下,波浪表面的形状和亮度是复合成本函数的最小值,该函数结合了数据保真度项和对未知数的平滑先验。由成本函数导出的耦合偏微分方程组的解可得到所需的海洋表面形状和亮度。该方法可扩展到海浪的时空动力学研究,并应用于三组视频数据。进行了统计和光谱分析。结果表明,重构波的全向波数谱S(k)衰减为k−2.5,这与Zakharov(1999)的理论一致。此外,利用重建波面的三维谱来估计波的频散和电流。
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