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首页> 外文期刊>ISPRS Journal of Photogrammetry and Remote Sensing >A practical sampling method for assessing accuracy of detected land cover/land use change: Theoretical analysis and simulation experiments
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A practical sampling method for assessing accuracy of detected land cover/land use change: Theoretical analysis and simulation experiments

机译:一种评估被测土地覆盖/土地利用变化准确性的实用采样方法:理论分析和模拟实验

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摘要

Accuracy assessment plays a crucial role in the implementation of change detection, which is commonly used to track land surface changes and ecosystem dynamics. There are currently two major indicators for accuracy assessment of change detection: the binary change accuracy (ca) and the overall transition accuracy (ta). The overall transition accuracy has been recommended over change accuracy, because the binary change accuracy does not consider the accuracy of the types of changes of the underlying land cover classes. However, the application of overall transition accuracy has been limited by the challenge of collecting enough representative samples with a practical sampling strategy to meet the users' requirement of precision. This study provides an iterative sampling framework to ensure that the precision of the estimated overall transition accuracy meets the users' predefined requirement. We use a set of simulated change maps to comprehensively examine the effectiveness and robustness of the proposed sampling strategy. The simulation-based results demonstrate that the proposed framework can achieve satisfactory performance for transition accuracy assessment and it is robust against different properties of classification results and target landscapes, including the degree of fragmentation, proportions of land cover types, and temporal correlation of the classification error between individual dates. The effectiveness, robustness and practicality of the proposed sampling strategy will enable producers and users of land cover/land use change maps to get reliable and meaningful accuracy assessment for further applications.
机译:准确性评估在实施变化检测中起着至关重要的作用,变化检测通常用于跟踪土地表面变化和生态系统动态。当前,有两个主要指标可用于更改检测的准确性评估:二进制更改准确性(ca)和总体转换准确性(ta)。建议使用总体过渡精度,而不要考虑变化精度,因为二进制变化精度不考虑基础土地覆盖类别的变化类型的精度。但是,总体过渡精度的应用受到了挑战,即采用实用的采样策略来收集足够的代表性样本以满足用户对精度的要求。这项研究提供了一个迭代抽样框架,以确保估计的总体过渡精度的精度满足用户的预定义要求。我们使用一组模拟的变化图来全面检查所提出的抽样策略的有效性和鲁棒性。基于仿真的结果表明,所提出的框架可以实现令人满意的过渡精度评估性能,并且对于分类结果和目标景观的不同属性(包括破碎程度,土地覆盖类型的比例以及分类的时间相关性)具有鲁棒性各个日期之间的错误。所提出的抽样策略的有效性,鲁棒性和实用性将使土地覆盖/土地利用变化图的生产者和使用者能够获得可靠且有意义的准确性评估,以供进一步应用。

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