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The MODIS (collection V006) BRDF/albedo product MCD43D: temporal course evaluated over agricultural landscape

机译:MODIS(集合V006)BRDF /反照率产品MCD43D:对农业景观的时间过程进行了评估

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摘要

The assessment of uncertainties in satellite-derived global surface albedo products is a critical aspect for studying the climate, ecosystem change, hydrology or the Earth's radiant energy budget. However, it is challenged by the spatial scaling errors between satellite and field measurements. This study aims at evaluating the forthcoming MODerate Resolution Imaging Spectroradiometer (MODIS) (Collection V006) Bidirectional Reflectance Distribution Function (BRDF)/albedo productMCD43Dover aMediterranean agricultural area.Here,we present the results from the accuracy assessment of theMODIS blue-sky albedo. The analysis is based on collocated comparisonswith higher spatial resolution estimates from Formosat-2 that were first evaluated against local in situmeasurements. The intersensor comparison is achieved by taking into account the effective point spread function (PSF) for MODIS albedo, modeled as Gaussian functions in the North–South and East–West directions. The equivalent PSF is estimated by correlation analysis between MODIS albedo and Formosat-2 convolved albedo. Results show that it is 1.2 to 2.0 times larger in the East–West direction as compared to the North–South direction. We characterized the equivalent PSF by a full width at half maximum size of 1920 m in East–West, 1200 m in North–South. This provided a very good correlation between the products, showing absolute (relative) Root Mean Square Errors from 0.004 to 0.013 (2% to 7%), and almost no bias. By inspecting 1-km plots homogeneous in land cover type,we found poorer performances over rice and marshes (i.e., relative Root Mean Square Error of about 11% and 7%, and accuracy of 0.011 and −0.008, respectively), and higher accuracy over dry and irrigated pastures, as well as orchards (i.e., relative uncertainty b3.8% and accuracy b0.003). The study demonstrates that neglecting theMODIS PSFwhen comparing the Formosat-2 albedo against theMODIS one induces an additional uncertainty up to 0.02 (10%) in albedo. The consistency between fine and coarse spatial resolution albedo estimates indicates the ability of the daily MCD43D product to reproduce reasonably well the dynamics of albedoThe assessment of uncertainties in satellite-derived global surface albedo products is a critical aspect for studying the climate, ecosystem change, hydrology or the Earth's radiant energy budget. However, it is challenged by the spatial scaling errors between satellite and field measurements. This study aims at evaluating the forthcoming MODerate Resolution Imaging Spectroradiometer (MODIS) (Collection V006) Bidirectional Reflectance Distribution Function (BRDF)/albedo productMCD43Dover aMediterranean agricultural area.Here,we present the results from the accuracy assessment of theMODIS blue-sky albedo. The analysis is based on collocated comparisonswith higher spatial resolution estimates from Formosat-2 that were first evaluated against local in situmeasurements. The intersensor comparison is achieved by taking into account the effective point spread function (PSF) for MODIS albedo, modeled as Gaussian functions in the North–South and East–West directions. The equivalent PSF is estimated by correlation analysis between MODIS albedo and Formosat-2 convolved albedo. Results show that it is 1.2 to 2.0 times larger in the East–West direction as compared to the North–South direction. We characterized the equivalent PSF by a full width at half maximum size of 1920 m in East–West, 1200 m in North–South. This provided a very good correlation between the products, showing absolute (relative) Root Mean Square Errors from 0.004 to 0.013 (2% to 7%), and almost no bias. By inspecting 1-km plots homogeneous in land cover type,we found poorer performances over rice and marshes (i.e., relative Root Mean Square Error of about 11% and 7%, and accuracy of 0.011 and −0.008, respectively), and higher accuracy over dry and irrigated pastures, as well as orchards (i.e., relative uncertainty b3.8% and accuracy b0.003). The study demonstrates that neglecting theMODIS PSFwhen comparing the Formosat-2 albedo against theMODIS one induces an additional uncertainty up to 0.02 (10%) in albedo. The consistency between fine and coarse spatial resolution albedo estimates indicates the ability of the daily MCD43D product to reproduce reasonably well the dynamics of albedo
机译:评估源自卫星的全球地表反照率产品的不确定性是研究气候,生态系统变化,水文学或地球辐射能预算的关键方面。然而,它受到卫星和野外测量之间空间比例误差的挑战。本研究旨在评估即将到来的地中海农业地区的中等分辨率成像光谱仪(MODIS)(V006系列)双向反射率分布函数(BRDF)/反照率产品MCD43。该分析基于并置比较,以及来自Formosat-2的更高空间分辨率的估算,该估算首先针对本地现场测量进行了评估。传感器之间的比较是通过考虑MODIS反射率的有效点扩展函数(PSF)来实现的,该有效点扩展函数建模为北,南和东西方向的高斯函数。通过MODIS反照率和Formosat-2卷积反照率之间的相关分析,估计等效PSF。结果表明,东西方向比南北方向大1.2到2.0倍。我们用等效的PSF来表征东西向最大宽度的一半,东西向为1920 m,南北为1200 m。这在产品之间提供了很好的相关性,显示的绝对(相对)均方根误差为0.004至0.013(2%至7%),几乎没有偏差。通过检查土地覆盖类型均一的1 km土地,我们发现水稻和沼泽地的性能较差(即相对均方根误差分别约为11%和7%,精度分别为0.011和-0.008),并且精度更高干旱和灌溉牧场以及果园(相对不确定度为b3.8%,准确度为b0.003)。该研究表明,在将Formosat-2反射率与MODIS进行比较时忽略MODIS PSF会导致高达0.02(10%)的不确定度。精细和粗略的空间分辨率反照率估计值之间的一致性表明,每日MCD43D产品能够合理地很好地再现反照率的动态卫星衍生全球地表反照率产品的不确定性评估是研究气候,生态系统变化,水文学的关键方面或地球的辐射能量预算。然而,它受到卫星和野外测量之间空间比例误差的挑战。本研究旨在评估即将到来的地中海农业地区的中等分辨率成像光谱仪(MODIS)(V006系列)双向反射率分布函数(BRDF)/反照率产品MCD43。该分析基于并置比较,以及来自Formosat-2的更高空间分辨率的估算,该估算首先针对本地现场测量进行了评估。传感器之间的比较是通过考虑MODIS反射率的有效点扩展函数(PSF)来实现的,该有效点扩展函数建模为北,南和东西方向的高斯函数。通过MODIS反照率和Formosat-2卷积反照率之间的相关分析,估计等效PSF。结果表明,东西方向比南北方向大1.2到2.0倍。我们用等效的PSF来表征东西向最大宽度的一半,东西向为1920 m,南北为1200 m。这在产品之间提供了很好的相关性,显示的绝对(相对)均方根误差为0.004至0.013(2%至7%),几乎没有偏差。通过检查土地覆盖类型均一的1 km土地,我们发现水稻和沼泽地的性能较差(即相对均方根误差分别约为11%和7%,精度分别为0.011和-0.008),并且精度更高干旱和灌溉牧场以及果园(相对不确定度为b3.8%,准确度为b0.003)。该研究表明,在将Formosat-2反射率与MODIS进行比较时忽略MODIS PSF会导致高达0.02(10%)的不确定度。精细和粗略的空间分辨率反照率估计值之间的一致性表明,每日MCD43D产品能够很好地再现反照率的动态

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