首页> 外文会议>Conference on remote sensing of the ocean, sea ice, coastal waters, and large water regions >From Multi-Sensor Tracking of Sea Surface Films to Mesoscale and Sub-Mesoscale Sea Surface Current Fields
【24h】

From Multi-Sensor Tracking of Sea Surface Films to Mesoscale and Sub-Mesoscale Sea Surface Current Fields

机译:从海面薄膜的多传感器跟踪到中尺度和亚中尺度海表电流场

获取原文

摘要

The knowledge about mesoscale and sub-mesoscale sea surface current fields is of high interdisciplinary interest, since it results in a better understanding of ocean-atmosphere interactions. However, many available numerical model results are of resolutions, which are too coarse to investigate mesoscale and sub-mesoscale turbulent features like eddies, particularly in coastal waters. In this work we present the results of tracking biogenic and anthropogenic surface film signatures on multi-sensor satellite images (SAR and multispectral images) to estimate the local sea surface current field. The main advantage of this approach is that the resolution of the derived current fields depends mainly on the resolution of the images, which have been used for tracking. Due to the large temporal distance between two acquisitions of a scene and the high variability of the tracked sea surface films, classical tracking methods, e.g. feature based or Optical Flow methods may not be applicable to successfully track the imaged signatures of the surface films. In this work, we use our former developed generic framework, which ensures the applicability and increases the stability of the results for well-known tracking and Optical Flow algorithms. With this framework, it is e.g. possible to compute the sea surface current field using Optical Flow approaches even for large spatiotemporal distances and with partial scene coverage. We present and compare the results of different tracking algorithms by means of tracking biogenic sea surface films. The investigated areas are the Baltic Sea and the Black Sea. We present the use of Landsat TM, SeaWiFS, ERS-2, TerraSAR-X and RADARSAT-2 data for the derivation of sea surface currents. The resolution of the images used varies from moderate to fine resolution, which allows the derivation sea surface current fields of moderate to fine resolutions.
机译:关于中尺度和次中尺度海表电流场的知识具有很高的跨学科兴趣,因为它可以使人们更好地了解海洋与大气之间的相互作用。但是,许多可用的数值模型结果都是分辨率的,太粗糙了,无法研究涡流等中尺度和亚中尺度的湍流特征,尤其是在沿海水域。在这项工作中,我们介绍了在多传感器卫星图像(SAR和多光谱图像)上跟踪生物和人为表面膜特征的结果,以估计当地海表电流场。这种方法的主要优点是,导出电流场的分辨率主要取决于已用于跟踪的图像的分辨率。由于场景的两次采集之间的时间间隔较大,而且所跟踪的海面电影变化很大,因此经典的跟踪方法,例如基于特征的方法或光流方法可能不适用于成功跟踪表面膜的成像签名。在这项工作中,我们使用我们以前开发的通用框架,该框架可确保适用性并提高著名跟踪和光流算法的结果稳定性。有了这个框架,例如即使对于较大的时空距离和部分场景覆盖,也可以使用“光流”方法来计算海面电流场。我们介绍并比较通过跟踪生物海面薄膜的不同跟踪算法的结果。被调查的地区是波罗的海和黑海。我们目前使用Landsat TM,SeaWiFS,ERS-2,TerraSAR-X和RADARSAT-2数据推导海面洋流。所使用图像的分辨率从中等分辨率到精细分辨率不等,这允许派生中等分辨率到精细分辨率的海面电流场。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号