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SURFACE TEMPERATURE CORRECTION FOR ACTIVE INFRARED REFLECTANCE MEASUREMENTS OF NATURAL MATERIALS

机译:天然材料主动红外反射测量的表面温度校正

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Land surface temperature algorithms for the moderate resolution imaging spectroradiometer satellite instrument will require the spectral bidirectional reflectance distribution function (BRDF) of natural surfaces in the thermal infrared. We designed the spectral infrared bidirectional reflectance and emissivity instrument to provide such measurements by the use of a Fourier transform infrared spectrometer. A problem we encountered is the unavoidable surface heating caused by the source irradiance. For our system, the effects of the heating can cause a 30% error in the measured BRDF. The error caused by heating is corrected by temporally curve fitting the radiance signal. This curve-fitting technique isolates the radiance caused by reflected irradiance. With this correction, other factors dominate the BRDF error. It is now similar to 5% and can be improved further. The method is illustrated with measurements of soil BRDF. (C) 1996 Optical Society of America [References: 7]
机译:中分辨率成像光谱辐射仪卫星仪器的地表温度算法将需要热红外中自然表面的光谱双向反射率分布函数(BRDF)。我们设计了光谱红外双向反射率和发射率仪,以通过使用傅立叶变换红外光谱仪进行此类测量。我们遇到的一个问题是由源辐射引起的不可避免的表面加热。对于我们的系统,加热的影响可能导致所测BRDF的误差为30%。通过辐射曲线的时间曲线拟合来校正由加热引起的误差。这种曲线拟合技术可隔离由反射辐照度引起的辐照度。进行此校正后,其他因素将主导BRDF误差。现在它接近5%,并且可以进一步改善。通过测量土壤BRDF来说明该方法。 (C)1996年美国眼镜学会[参考文献:7]

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