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Error sources on the land surface temperature retrieved from thermal infrared single channel remote sensing data

机译:从热红外单通道遥感数据获取的地表温度误差源

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摘要

In this paper, a theoretical study complementary to others given in the literature about the errors committed on the land surface temperature retrieved from the radiative transfer equation in the thermal infrared region by remote sensing techniques has been analysed. For this purpose, the MODTRAN 3.5 code has been used in order to simulate different conditions and evaluate the influence of several parameters on the land surface temperature accuracy: atmospheric correction, noise of the sensor, land surface emissivity, aerosols and other gaseous absorbers, angular effects, wavelength uncertainty, full-width half-maximum of the sensor and band-pass effects. The results show that the most important error source is due to atmospheric effects, which leads to an error on surface temperature between 0.2 K and 0.7 K, and land surface emissivity uncertainty, which leads to an error on surface temperature between 0.2 and 0.4 K. Hence, assuming typical uncertainties for remote sensing measurements, a total error for land surface temperature between 0.3 K and 0.8 K has been found, so it is difficult to achieve an accuracy lower than these values unless more accurate in situ values for emissivity and atmospheric parameters are available.
机译:在本文中,对通过遥感技术从热红外区域中的辐射传递方程获得的地表温度误差进行了理论研究,该研究与文献中的其他研究相辅相成。为此,使用了MODTRAN 3.5代码来模拟不同的条件并评估多个参数对地面温度精度的影响:大气校正,传感器噪声,地面发射率,气溶胶和其他气体吸收剂,角效应,波长不确定性,传感器的全宽半最大值和带通效应。结果表明,最重要的误差源是由于大气影响导致的,表​​面温度的误差在0.2 K至0.7 K之间,而地面发射率不确定性导致表面温度的误差在0.2 K至0.4 K之间。因此,假设遥感测量存在典型的不确定性,则发现地面温度的总误差介于0.3 K和0.8 K之间,因此很难获得比这些值低的精度,除非更精确的辐射率和大气参数原位值可用。

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