Monitoring urban land cover change by updating the National Land Cover Database impervious surface products

G. Xian, C. Homer
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引用次数: 3

Abstract

The U.S. Geological Survey (USGS) National Land Cover Database (NLCD) 2001 is widely used as a baseline for national land cover and impervious conditions. To ensure timely and relevant data, it is important to update this base to a more recent time period. A prototype method was developed to update the land cover and impervious surface by individual Landsat path and row. This method updates NLCD 2001 to a nominal date of 2006 by using both Landsat imagery and data from NLCD 2001 as the baseline. Pairs of Landsat scenes in the same season from both 2001 and 2006 were acquired according to satellite paths and rows and normalized to allow calculation of change vectors between the two dates. Conservative thresholds based on Anderson Level I land cover classes were used to segregate the change vectors and determine areas of change and no-change. Once change areas had been identified, impervious surface was estimated for areas of change by sampling from NLCD 2001 in unchanged areas. Methods were developed and tested across five Landsat path/row study sites that contain a variety of metropolitan areas. Results from the five study areas show that the vast majority of impervious surface changes associated with urban developments were accurately captured and updated. The approach optimizes mapping efficiency and can provide users a flexible method to generate updated impervious surface at national and regional scales.
通过更新国家土地覆盖数据库不透水面产品监测城市土地覆盖变化
美国地质调查局(USGS) 2001年国家土地覆盖数据库(NLCD)被广泛用作国家土地覆盖和不透水条件的基线。为了确保及时和相关的数据,重要的是将该数据库更新到最近的时间段。提出了一种基于陆地卫星路径和行来更新陆地覆盖和不透水地表的原型方法。该方法使用陆地卫星图像和NLCD 2001的数据作为基线,将NLCD 2001的标称日期更新为2006年。根据卫星路径和行,获取了2001年和2006年同一季节的陆地卫星场景对,并进行了归一化,以便计算两个日期之间的变化向量。采用基于Anderson Level I土地覆被分类的保守阈值来划分变化向量,确定变化区域和无变化区域。一旦确定了变化区域,通过NLCD 2001在未变化区域的采样来估计变化区域的不透水表面。研究人员在五个陆地卫星路径/行研究地点开发并测试了各种方法,这些地点包含各种大都市区。五个研究区域的结果表明,绝大多数与城市发展相关的不透水地表变化都被准确捕获和更新。该方法优化了制图效率,并为用户提供了一种灵活的方法来生成国家和区域尺度上的最新不透水地表。
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