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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Estimation of aerosol optical depth by applying the optimal distance number to NOAA AVHRR data
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Estimation of aerosol optical depth by applying the optimal distance number to NOAA AVHRR data

机译:通过将最佳距离数应用于NOAA AVHRR数据来估算气溶胶光学深度

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摘要

In order to correctly interpret the surface information with remotely sensed data, the extinction effects of the atmosphere must be appropriately removed. The aerosol optical depth (AOD) serves as an important parameter in describing this effect. Several factors, such as the satellite observation geometry, terrain geometry, temporal variation of canopy, and so forth, produce errors in the AOD estimation. This study strives to avoid such errors by introducing an "optimal distance number" into the structure function method that has been developed previously in estimating the AOD. The results of our experiment measured by a ground-based sunphotometer showed that the average errors of the estimated AOD values was reduced from 4000 to 1100 after the "optimal distance number" was used, indicating a significant improvement.
机译:为了用遥感数据正确解释地表信息,必须适当消除大气的消光作用。气溶胶光学深度(AOD)是描述这种效果的重要参数。诸如卫星观测几何形状,地形几何形状,冠层的时间变化等多种因素在AOD估算中产生误差。本研究通过在结构函数方法中引入“最佳距离数”来努力避免此类错误,该方法是先前在估算AOD时开发的。通过基于地面的日光光度计测量的实验结果表明,使用“最佳距离数”后,估计的AOD值的平均误差从4000减少到1100,表明有显着改善。

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