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Practical split-window algorithm for retrieving land surface temperature over agricultural areas from ASTER data

机译:实用的分割窗口算法,用于从ASTER数据获取农业区域的地表温度

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摘要

A practical split-window algorithm which involves two parameters (transmittance and emissivity) utilized to retrieve land-surface temperature over agricultural areas from the Advanced Spaceborne Thermal Emission and Reflection Radiometer data is presented. First, by calculating the relationship between thermal radiation intensity and temperature, the Planck function is simplified using exponential function which is applied to deduce the split-window algorithm. Second, how to obtain transmittance from water vapor content and the method for estimating emissivity using normalized difference vegetation index are discussed in detail. Sensitivity analysis demonstrates that the algorithm is not sensitive to these two parameters. Finally, a standard atmospheric simulation method has been used to validate the proposed algorithm, and comparison between the algorithm and the prior study has been carried out. The results indicate that the average accuracy is 0.32 K for the case without error in both transmittance and emissivity, which is better than the prior algorithm. The accuracy is also 0.32 K when the transmittance is computed from the water content by piecewise cubic polynomial fit. The accuracy is about 0.30 K similar to 0.33 K corresponding to different Pv (Pv is the proportion of vegetation) values, which indicates that this algorithm is suitable for different land surface types over agricultural areas. (C) 2014 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:提出了一种实用的分割窗口算法,该算法涉及两个参数(透射率和发射率),用于从高级星载热发射和反射辐射计数据中检索农业区域的地表温度。首先,通过计算热辐射强度与温度之间的关系,使用指数函数简化了普朗克函数,该函数用于推导分割窗口算法。其次,详细讨论了如何从水蒸气含量中获得透射率,以及使用归一化植被指数估算辐射率的方法。敏感性分析表明,该算法对这两个参数不敏感。最后,采用一种标准的大气模拟方法对该算法进行了验证,并对算法与现有研究进行了比较。结果表明,在无透射率和发射率误差的情况下,平均精度为0.32 K,优于现有算法。当通过分段三次多项式拟合从水含量计算出透光率时,精度也为0.32K。精度约为0.30 K,与对应于不同Pv(Pv是植被的比例)值的0.33 K相似,这表明该算法适用于农业地区的不同土地表面类型。 (C)2014年光电仪器工程师协会(SPIE)

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