Ab'/> Assessing the accuracy of multi-temporal built-up land layers across rural-urban trajectories in the United States
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Assessing the accuracy of multi-temporal built-up land layers across rural-urban trajectories in the United States

机译:评估在美国农村城市轨迹跨越多时颞基层层的准确性

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AbstractGlobal data on settlements, built-up land and population distributions are becoming increasingly available and represent important inputs to a better understanding of key demographic processes such as urbanization and interactions between human and natural systems over time. One persistent drawback that prevents user communities from effectively and objectively using these data products more broadly, is the absence of thorough and transparent validation studies. This study develops a validation framework for accuracy assessment of multi-temporal built-up land layers using integrated public parcel and building records as validation data. The framework is based on measures derived from confusion matrices and incorporates a sensitivity analysis for potential spatial offsets between validation and test data as well as tests for the effects of varying criteria of the abstract term built-up land on accuracy measures. Furthermore, the framework allows for accuracy assessments by strata of built-up density, which provides important insights on the relationship between classification accuracy and development intensity to better instruct and educate user communities on quality aspects that might be relevant to different purposes. We use data from the newly-released Global Human Settlement Layer (GHSL), for four epochs since 1975 and at fine spatial resolution (38m), in the United States for a demonstration of the framework. The results show very encouraging accuracy measures that vary across study areas, generally improve over time but show very distinct patterns across the rural-urban trajectories. Areas of higher development intensity are very accurately classified and highly
机译:<![cdata [ 抽象 全球数据的定居点,建立土地和人口分布日益上可用,并代表更好的输入了解关键人口流程,如城市化和自然系统之间的相互作用随着时间的推移。一个持续缺点,以便更广泛地利用这些数据产品从有效地和客观地使用这些数据产品,是没有彻底和透明的验证研究。本研究开发了使用集成的公共包裹和建筑记录作为验证数据的多时间内置陆地层的准确评估验证框架。该框架基于源自困惑矩阵的措施,并结合了验证和测试数据之间的潜在空间偏移的灵敏度分析,以及对摘要术语建立土地的不同标准对准确度措施的影响。此外,该框架允许通过建立密度的层次进行准确性评估,这提供了对分类准确性和发展强度之间关系的重要见解,以更好地指导和教育用户社区可能与不同目的相关的质量方面。我们根据1975年以来的四个时期使用来自新发布的全球人体结算层(GHSL)的数据,并在美国的精细空间分辨率(38米),以便示范框架。结果表明,在研究领域的跨越学习区域的非常令人鼓舞的准确性措施,通常会随着时间的推移而改善,但在农村城市轨迹中表现出非常鲜明的模式。发展强度高的领域是非常准确的和高度的

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