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The MODerate-Resolution Imaging Spectroradiometer (MODIS) reflectance anisotropy and albedo of dormant and snow-covered canopies.

机译:中等分辨率成像光谱仪(MODIS)的反射率各向异性和休眠和冰雪覆盖的冠层的反照率。

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摘要

Data from NASA's MODerate Resolution Imaging Spectroradiometer (MODIS), in polar orbit on the Terra and Aqua platforms, have provided surface bidirectional reflectance distribution function (BRDF) and albedo products (MCD43) that have been successfully validated during the growing seasons of various vegetated land surface types. This research, however, focuses on the quality of MODIS BRDF/albedo product retrievals during the more difficult periods of vegetation dormancy and snow cover by comparison with ground-based albedo measurements. Cropland, grassland, deciduous and conifer forest, and high latitude tundra (including recently burned) sites are considered. Low illumination angles and persistent cloudiness, as well as lower-quality atmospheric correction and cloud discrimination, limit the number of high quality retrievals that are obtained during snow-covered periods. Forest retrievals are challenging as underlying snow may be obscured by foliage or canopy shadows at high viewing and illumination angles. Neither satellite albedo retrievals nor ground measurements are considered reliable at solar zenith angles greater than 70°, which further complicates retrievals at high latitude locations. Moreover, changes due to snowfall or snowmelt can alter the albedo of a location significantly over a very short timescale. Therefore, the standard 500-m gridded BRDF/albedo products are also compared with results from both the MODIS daily Direct Broadcast BRDF/Albedo algorithm and the standard MOD10A daily snow albedo product. Using an integrated validation strategy, analyses of the representativeness of the surface heterogeneity under both dormant and snow-covered situations are performed to decide whether direct comparisons between ground measurements and 500-m satellite observations can be made or whether finer spatial resolution airborne or spaceborne data are required to scale the results at each location. Landsat ETM+ data are used to generate finer scale representations of albedo at each location to fully link ground data with satellite data. Results show that high quality MCD43 products do achieve a high accuracy during both dormant and snow-covered periods as compared to either spatially representative field data or field data that have been scaled up with Landsat imagery. However, a daily retrieval strategy is necessary to capture ephemeral snow events or rapidly changing situations such as the spring snow melt.
机译:来自NASA的MODerate分辨率成像光谱仪(MODIS)的数据在Terra和Aqua平台的极轨道上提供了表面双向反射率分布函数(BRDF)和反照率产品(MCD43),在各种植被土地的生长季节中都已成功对其进行了验证表面类型。但是,与地面反照率测量相比,这项研究的重点是在植被休眠和积雪较困难的时期,MODIS BRDF /反照率产品的质量。考虑了农田,草原,落叶和针叶林以及高纬度冻原(包括最近被烧毁)的地点。低照明角度和持续的混浊,以及较低质量的大气校正和云辨别力,限制了在积雪期间获得的高质量取回次数。森林采伐具有挑战性,因为在高视角和照明角度下,潜在的积雪可能会被树叶或树冠阴影所遮盖。在太阳天顶角大于70°时,卫星反照率反演和地面测量均不被认为是可靠的,这使高纬度地区的反演变得更加复杂。此外,由于降雪或融雪引起的变化会在很短的时间内显着改变某个位置的反照率。因此,还将标准的500米网格BRDF /反照率产品与MODIS每日直接广播BRDF / Albedo算法和标准MOD10A每日降雪反照率产品的结果进行比较。使用集成的验证策略,对休眠和积雪情况下的表面异质性的代表性进行分析,以决定是否可以直接比较地面测量值和500米卫星观测值,还是确定更精细的机载或星载空间分辨率需要在每个位置缩放结果。 Landsat ETM +数据用于在每个位置生成更精细的反照率表示,以将地面数据与卫星数据完全链接。结果表明,与具有空间代表性的田野数据或使用Landsat影像按比例放大的田野数据相比,高质量的MCD43产品在休眠和积雪期间均能实现高精度。但是,必须采用每日检索策略来捕获短暂的降雪事件或快速变化的情况,例如春季融雪。

著录项

  • 作者

    Wang, Zhuosen.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Physical Geography.;Remote Sensing.;Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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