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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing. >Motion Estimation Techniques to Automatically Track Oceanographic Thermal Structures in Multisensor Image Sequences
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Motion Estimation Techniques to Automatically Track Oceanographic Thermal Structures in Multisensor Image Sequences

机译:自动估计多传感器图像序列中海洋热结构的运动估计技术

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摘要

The ocean involves a complex set of physical, chemical, biological, and geological processes, interacting with each other to influence our climate and natural environment. One of the most important disciplines in oceanography is the study of the ocean dynamics and, particularly, the ocean surface circulation. One can estimate this by the automated tracking of thermal infrared features in pairs of sequential satellite imagery. In this context, an extensive analysis of different motion estimation techniques has been performed by employing databases with synthetic sequences, real sequences, and in situ measurements. Four region-based metrics and two differential algorithms are proposed to estimate surface currents in multitemporal and multisensor AVHRR and MODIS image sequences. Once the appropriate motion estimation techniques have been selected, a new methodology to compute ocean currents is proposed. It includes a preliminary step to precisely segment the oceanographic structures and a second step to track its motion using additional modules (initialization, preprocessing, and postprocessing) to increase effectiveness. The information provided by the segmentation step reduces computing times, initializes the motion estimation parameters with appropriate values, and increases the overall performance. In summary, this two-stage approach combines image processing tools and physical oceanography knowledge to achieve a good ocean current estimation.
机译:海洋涉及一系列复杂的物理,化学,生物和地质过程,它们相互影响以影响我们的气候和自然环境。海洋学中最重要的学科之一是海洋动力学的研究,尤其是海洋表面环流的研究。可以通过在成对的连续卫星图像中自动跟踪热红外特征来估计这一点。在这种情况下,已经通过采用具有合成序列,真实序列和原位测量的数据库,对不同的运动估计技术进行了广泛的分析。提出了四个基于区域的度量和两种差分算法来估计多时间和多传感器AVHRR和MODIS图像序列中的表面电流。一旦选择了合适的运动估计技术,就提出了一种计算洋流的新方法。它包括精确分割海洋结构的初步步骤,以及使用附加模块(初始化,预处理和后处理)以提高有效性的第二步以跟踪其运动。分割步骤提供的信息减少了计算时间,使用适当的值初始化运动估计参数,并提高了整体性能。总而言之,此两阶段方法将图像处理工具和物理海洋学知识相结合,以实现良好的洋流估计。

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