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Adjusted normalized emissivity method for surface temperature and emissivity retrieval from optical and thermal infrared remote sensing data

机译:调整后的归一化发射率方法,用于从光学和热红外遥感数据中检索表面温度和发射率

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摘要

A methodology for the retrieval of surface temperatures and emissivities combining visible, near infrared and thermal infrared remote sensing data was applied to Digital Airborne Imaging Spectrometer (DAIS) data and validated with coincident ground measurements acquired in a multiyear experiment held in an agricultural site in Barrax, Spain. The Adjusted Normalized Emissivity Method (ANEM) is based on the use of visible and near infrared data to estimate the vegetation cover and model the maximum emissivity according to the Vegetation Cover Method. The pixel-dependent maximum emissivity is used as the initial guess of the Normalized Emissivity Method to obtain the surface temperature and emissivity from the thermal infrared data. ANEM allows adjusting the initial emissivity with regard to the spatial variation of emissivity with vegetation cover, instead of using a fixed emissivity. Surface temperatures derived with ANEM agreed well with ground data, with a standard deviation of ±0.8 K and nearly zero bias for all the surface types. Retrieved emissivities were mostly within ±0.01 of the measured values, despite certain instrumental problems apparent in the thermal part of DAIS. An analysis of the emissivity spectra was performed, showing the utility in the discrimination of different agricultural surface types in the area.
机译:将可见,近红外和热红外遥感数据相结合的表面温度和发射率的检索方法应用于数字机载成像光谱仪(DAIS)数据,并通过在Barrax的一个农业地点进行的多年实验中获得的一致地面测量结果进行了验证,西班牙。调整归一化发射率法(ANEM)基于可见光和近红外数据来估算植被覆盖率,并根据植被覆盖率方法模拟最大发射率。与像素有关的最大发射率用作归一化发射率方法的初始猜测,以便从热红外数据获得表面温度和发射率。 ANEM允许针对具有植被覆盖的发射率的空间变化来调整初始发射率,而不是使用固定的发射率。用ANEM得出的表面温度与地面数据非常吻合,所有表面类型的标准偏差为±0.8 K,偏差几乎为零。尽管DAIS的热学部分存在某些仪器问题,但检索到的发射率大多在测量值的±0.01以内。进行了发射光谱的分析,显示出在区分该地区不同农业表面类型中的效用。

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