...
首页> 外文期刊>Earth Surface Dynamics Discussions >The determination of high-resolution spatio-temporal glacier motion fields from time-lapse sequences
【24h】

The determination of high-resolution spatio-temporal glacier motion fields from time-lapse sequences

机译:从延时序列确定高分辨率时空冰川运动场

获取原文
           

摘要

This paper presents a comprehensive method for the determination of glacier surface motion vector fields at high spatial and temporal resolution. These vector fields can be derived from monocular terrestrial camera image sequences and are a valuable data source for glaciological analysis of the motion behaviour of glaciers. The measurement concepts for the acquisition of image sequences are presented, and an automated monoscopic image sequence processing chain is developed. Motion vector fields can be derived with high precision by applying automatic subpixel-accuracy image matching techniques on grey value patterns in the image sequences. Well-established matching techniques have been adapted to the special characteristics of the glacier data in order to achieve high reliability in automatic image sequence processing, including the handling of moving shadows as well as motion effects induced by small instabilities in the camera set-up. Suitable geo-referencing techniques were developed to transform image measurements into a reference coordinate system. The result of monoscopic image sequence analysis is a dense raster of glacier surface point trajectories for each image sequence. Each translation vector component in these trajectories can be determined with an accuracy of a few centimetres for points at a distance of several kilometres from the camera. Extensive practical validation experiments have shown that motion vector and trajectory fields derived from monocular image sequences can be used for the determination of high-resolution velocity fields of glaciers, including the analysis of tidal effects on glacier movement, the investigation of a glacier's motion behaviour during calving events, the determination of the position and migration of the grounding line and the detection of subglacial channels during glacier lake outburst floods.
机译:本文提出了一种在高时空分辨率下确定冰川表面运动矢量场的综合方法。这些矢量场可以从单眼地面相机图像序列中获得,并且是冰川运动行为的冰川学分析的宝贵数据源。提出了获取图像序列的测量概念,并开发了自动单视场图像序列处理链。通过对图像序列中的灰度值模式应用自动的亚像素精度图像匹配技术,可以高精度地导出运动矢量场。为了在自动图像序列处理中获得高度可靠性,包括对运动阴影的处理以及由相机设置中的较小不稳定性引起的运动效果,已经建立了完善的匹配技术以适应冰川数据的特殊特性。开发了合适​​的地理参考技术以将图像测量值转换为参考坐标系。单视场图像序列分析的结果是每个图像序列的冰川表面点轨迹的密集栅格。这些轨迹中的每个平移矢量分量对于距相机几公里远的点都可以以几厘米的精度确定。广泛的实际验证实验表明,从单眼图像序列中得出的运动矢量和轨迹场可用于确定冰川的高分辨率速度场,包括分析潮汐对冰川运动的影响,研究冰川在运动过程中的运动行为。冰川湖爆发洪水期间发生产犊事件,确定接地线的位置和迁移以及冰川下渠道的发现。

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