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Local variability based sampling for mapping a soil erosion cover factor by co-simulation with Landsat TM images

机译:通过与Landsat TM影像的协同仿真,基于局部变化的采样来绘制土壤侵蚀覆盖因子

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摘要

When using remotely sensed data, a cost-efficient sampling design for collecting ground data is needed to accurately map natural resources, environmental and ecological systems. The existing methods including traditional simple random sampling and kriging or cokriging variance based sampling designs can not lead to optimal sampling designs. In this study, a local variability based sampling design using a sequential Gaussian co-simulation by combining remotely sensed and ground data is developed. This method theoretically can lead to a sampling design with variable sampling distances, that is, grid spacings that are optimal at local and global levels. The method was assessed and compared with simple random sampling in a case study in which the soil erosion ground and vegetation cover factor was sampled and mapped using Landsat Thematic Mapper (TM) images and annual permanent ground measurements sampled from 1989 to 1995. The results show that the local variability based sampling greatly reduced the number of sampled plots and increased the cost-efficiency for sampling in comparison to simple random sampling. The difference in cost-efficiency between the two methods increased with increased global variation. This method can also be applied to analyse the sufficiency of a permanent plot sample and further provide information for additional sampling.
机译:使用遥感数据时,需要一种经济高效的采样设计来收集地面数据,以准确绘制自然资源,环境和生态系统的地图。现有的方法,包括传统的简单随机抽样和基于克里格法或基于协克里格方差的抽样设计,都无法导致最佳的抽样设计。在这项研究中,开发了一种基于局部变异性的采样设计,该采样设计通过将遥感数据和地面数据相结合,使用顺序高斯协仿真。从理论上讲,该方法可以导致采样设计具有可变的采样距离,即在局部和全局级别上最佳的网格间距。在一个案例研究中,对该方法进行了评估并与简单随机抽样进行了比较,该案例使用Landsat Thematic Mapper(TM)图像对土壤侵蚀地面和植被覆盖因子进行了采样并绘制了地图,并从1989年至1995年进行了年度永久地面测量。与简单的随机抽样相比,基于局部变异性的抽样大大减少了抽样地块的数量,并提高了抽样成本。两种方法之间的成本效率差异随着全球差异的增加而增加。该方法还可以用于分析永久样地样本的充分性,并进一步提供信息以进行其他采样。

著录项

  • 来源
    《International journal of remote sensing》 |2006年第14期|p.2423-2447|共25页
  • 作者单位

    US Army Corps of Engineers, Construction Engineering Research Laboratory (CERL), PO Box 9005, Champaign, IL, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遥感技术;
  • 关键词

  • 入库时间 2022-08-17 13:26:08

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