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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Estimation of incident photosynthetically active radiation from Moderate Resolution Imaging Spectrometer data
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Estimation of incident photosynthetically active radiation from Moderate Resolution Imaging Spectrometer data

机译:入射光合成有效的估计辐射中分辨率成像谱仪数据

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Incident photosynthetically active radiation (PAR) is a key variable needed by almost all terrestrial ecosystem models. Unfortunately, the current incident PAR products estimated from remotely sensed data at spatial and temporal resolutions are not sufficient for carbon cycle modeling and various applications. In this study, the authors develop a new method based on the look-up table approach for estimating instantaneous incident PAR from the polar-orbiting Moderate Resolution Imaging Spectrometer (MODIS) data. Since the top-of-atmosphere (TOA) radiance depends on both surface reflectance and atmospheric properties that largely determine the incident PAR, our first step is to estimate surface reflectance. The approach assumes known aerosol properties for the observations with minimum blue reflectance from a temporal window of each pixel. Their inverted surface reflectance is then interpolated to determine the surface reflectance of other observations. The second step is to calculate PAR by matching the computed TOA reflectance from the look-up table with the TOA values of the satellite observations. Both the direct and diffuse PAR components, as well as the total shortwave radiation, are determined in exactly the same fashion. The calculation of a daily average PAR value from one or two instantaneous PAR values is also explored. Ground measurements from seven FLUXNET sites are used for validating the algorithm. The results indicate that this approach can produce reasonable PAR product at 1 km resolution and is suitable for global applications, although more quantitative validation activities are still needed.
机译:事件光合有效辐射(PAR)是一个关键变量所需的几乎所有陆地生态系统模型。当前事件产品估计从不相上下遥感数据在空间和时间决议是碳循环不充分建模和各种应用程序。作者开发一个基于新方法查表方法估算瞬时事件相提并论的极轨中分辨率成像光谱仪(MODIS)的数据。top-of-atmosphere (TOA)辐射取决于两种表面反射和大气特性很大程度上决定事件相提并论,我们第一步是估计表面反射率。该方法假定气溶胶的属性观察结果用最小的蓝色反射从每个像素的时间窗口。然后插值倒表面反射率确定其他的表面反射率观察。通过匹配的TOA反射率计算查表的TOA值卫星观测。扩散标准组件,以及总短波辐射,在完全确定相同的方式。从一个或两个瞬时平均票面价值票面价值也是探索。从七FLUXNET网站用于验证这个算法。方法能产生合理的标准产品1公里分辨率和适合全球应用程序,尽管更多量化验证活动仍然是需要的。

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