首页> 外文OA文献 >A robust surface matching technique for coastal geohazard monitoring
【2h】

A robust surface matching technique for coastal geohazard monitoring

机译:一种适用于沿海地质灾害监测的稳健表面匹配技术

摘要

Coastal geohazards, such as landslides, mudflows, and rockfalls, represent a major driver for coastal change in many regions of the world, and often impinge on aspects of the human and natural environment. In such cases, there is a pressing need for the development of more effective monitoring strategies, particularly given the uncertainties associated with the impact of future climate change. Traditional survey approaches tend to suffer from limited spatial resolution, while contemporary techniques are generally unsuitable in isolation, due to the often complex coastal topography. To address these issues, this thesis presents the development and application of a strategy for integrated remote monitoring of coastal geohazards. The monitoring strategy is underpinned by a robust least squares surface matching technique, which has been developed to facilitate change detection through the reliable reconciliation of multi-temporal, multi-sensor datasets in dynamic environments. Specifically, this research has concentrated on integrating the developing techniques of airborne and terrestrial laser-scanning. In addition, archival aerial photography has been incorporated in order to provide a historical context for analysis of geohazard development. Robust surface matching provides a mechanism for reliable registration of DEM surfaces contaminated by regions of difference, which may arise through geohazard activity or vegetation change. The development of this algorithm has been presented, and its potential demonstrated through testing with artificial datasets. The monitoring strategy was applied to the soft-cliff test site of Filey Bay, North Yorkshire. This highlighted the viability of the robust matching algorithm, demonstrating the effectiveness of this technique for absolute orientation of DEMs derived from archival aerial photography. Furthermore, the complementary qualities of airborne and terrestrial laser scanning have been confirmed, particularly in relation to their value for multi-scale terrain monitoring. Issues of transferability were explored through application of the monitoring strategy to the hard rock environment of Whitby East Cliff. Investigations in this challenging environment confirmed the potential of the robust matching algorithm, and highlighted a number of valuable issues in relation to the monitoring techniques. Investigations at both test sites enabled in-depth assessment and quantification of geohazard activity over extended periods of time.
机译:诸如滑坡,泥石流和崩塌之类的沿海地质灾害是世界许多地区沿海变化的主要驱动力,并经常影响人类和自然环境。在这种情况下,迫切需要开发更有效的监测策略,特别是考虑到与未来气候变化的影响相关的不确定性。传统的测量方法往往会受到空间分辨率有限的困扰,而现代技术通常由于沿海地势通常很复杂而不能孤立地使用。为了解决这些问题,本文提出了对沿海地质灾害进行综合远程监测的策略的发展和应用。强大的最小二乘曲面匹配技术为监控策略提供了支持,该技术已通过动态环境中的多时间,多传感器数据集的可靠协调来促进更改检测。具体而言,这项研究集中于整合机载和地面激光扫描的发展技术。此外,已纳入档案航拍,以便为地质灾害发展分析提供历史背景。坚固的表面匹配为可靠地记录受差异区域污染的DEM表面提供了一种机制,这些差异可能是由于地质灾害活动或植被变化而引起的。提出了该算法的开发,并通过人工数据集测试证明了其潜力。监视策略已应用于北约克郡Filey湾的软崖测试现场。这突出了鲁棒匹配算法的可行性,证明了该技术对源自档案航拍的DEM绝对方向的有效性。此外,已经确认了机载和地面激光扫描的互补质量,特别是关于其在多尺度地形监测中的价值。通过将监测策略应用于惠特比东悬崖的硬岩环境,探讨了可转移性问题。在这个充满挑战的环境中进行的研究证实了鲁棒匹配算法的潜力,并强调了与监控技术有关的许多有价值的问题。通过在两个测试地点进行的调查,可以对长时间内的地质灾害活动进行深入评估和量化。

著录项

  • 作者

    Miller Pauline Elizabeth;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

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