首页> 外文会议>ISPRS Congress >OPTICAL FLOW APPLIED TO TIME-LAPSE IMAGE SERIES TO ESTIMATE GLACIER MOTION IN THE SOUTHERN PATAGONIA ICE FIELD
【24h】

OPTICAL FLOW APPLIED TO TIME-LAPSE IMAGE SERIES TO ESTIMATE GLACIER MOTION IN THE SOUTHERN PATAGONIA ICE FIELD

机译:光流量适用于延时图像系列,以估算南巴拉哥尼亚冰田的冰川运动

获取原文

摘要

In this work, we assessed the feasibility of using optical flow to obtain the motion estimation of a glacier. In general, former investigations used to detect glacier changes involve solutions that require repeated observations which are many times based on extensive field work. Taking into account glaciers are usually located in geographically complex and hard to access areas, deploying time-lapse imaging sensors, optical flow may provide an efficient solution at good spatial and temporal resolution to describe mass motion. Several studies in computer vision and image processing community have used this method to detect large displacements. Therefore, we carried out a test of the proposed Large Displacement Optical Flow method at the Viedma Glacier, located at South Patagonia Icefield, Argentina. We collected monoscopic terrestrial time-lapse imagery, acquired by a calibrated camera at every 24 hour from April 2014 until April 2015. A filter based on temporal correlation and RGB color discretization between the images was applied to minimize errors related to changes in lighting, shadows, clouds and snow. This selection allowed discarding images that do not follow a sequence of similarity. Our results show a flow field in the direction of the glacier movement with acceleration in the terminus. We analyzed the errors between image pairs, and the matching generally appears to be adequate, although some areas show random gross errors related to the presence of changes in lighting. The proposed technique allowed the determination of glacier motion during one year, providing accurate and reliable motion data for subsequent analysis.
机译:在这项工作中,我们评估了使用光学流动以获得冰川的运动估计的可行性。通常,用于检测冰川变化的前一项调查涉及需要重复观察的解决方案,这是基于广泛的现场工作的多次。考虑到冰川通常位于地理上复杂且难以访问区域,部署时间流逝成像传感器,光流量可以以良好的空间和时间分辨率提供有效的解决方案以描述质量运动。计算机视觉和图像处理社区的几项研究使用该方法来检测大型位移。因此,我们对位于阿根廷南巴塔哥尼亚冰岛的Viedma Glacier的提出的大型位移光学流量进行了测试。我们收集了单声道地面间隔图像,从2014年4月的每24小时到2015年4月到2015年4月的每24小时收购。应用了图像之间的时间相关性和RGB色散的过滤器,以最小化与照明,阴影的变化相关的错误,云和雪。此选择允许丢弃不遵循类似相似性序列的图像。我们的结果显示了辉煌的冰川运动方向的流场,在末端加速。我们分析了图像对之间的错误,并且匹配通常似乎足够,尽管某些区域显示与照明的变化有关的随机粗略误差。所提出的技术允许在一年内确定冰川运动,为后续分析提供准确可靠的运动数据。

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