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Determination of Optimum Viewing Angles for the Angular Normalization of Land Surface Temperature over Vegetated Surface

机译:植被地表温度角度归一化的最佳视角的确定

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摘要

Multi-angular observation of land surface thermal radiation is considered to be a promising method of performing the angular normalization of land surface temperature (LST) retrieved from remote sensing data. This paper focuses on an investigation of the minimum requirements of viewing angles to perform such normalizations on LST. The normally kernel-driven bi-directional reflectance distribution function (BRDF) is first extended to the thermal infrared (TIR) domain as TIR-BRDF model, and its uncertainty is shown to be less than 0.3 K when used to fit the hemispheric directional thermal radiation. A local optimum three-angle combination is found and verified using the TIR-BRDF model based on two patterns: the single-point pattern and the linear-array pattern. The TIR-BRDF is applied to an airborne multi-angular dataset to retrieve LST at nadir (Te-nadir) from different viewing directions, and the results show that this model can obtain reliable Te-nadir from 3 to 4 directional observations with large angle intervals, thus corresponding to large temperature angular variations. The Te-nadir is generally larger than temperature of the slant direction, with a difference of approximately 0.5~2.0 K for vegetated pixels and up to several Kelvins for non-vegetated pixels. The findings of this paper will facilitate the future development of multi-angular thermal infrared sensors.
机译:陆面热辐射的多角度观测被认为是执行从遥感数据中检索到的陆面温度(LST)的角度归一化的一种有前途的方法。本文重点研究在LST上执行此类标准化的最小视角要求。通常将内核驱动的双向反射分布函数(BRDF)作为TIR-BRDF模型扩展到热红外(TIR)域,并且当用于拟合半球定向热时,其不确定度显示为小于0.3 K辐射。使用TIR-BRDF模型基于两种模式:单点模式和线性阵列模式,找到并验证了局部最佳三角组合。将TIR-BRDF应用于机载多角度数据集以从不同的观察方向检索天底(Te-nadir)的LST,结果表明该模型可以从3到4个大角度定向观测中获得可靠的Te-nadir间隔,因此对应于较大的温度角变化。 Te-nadir通常大于倾斜方向的温度,对于带植被的像素,其差异大约为0.5〜2.0 K,对于非带植被的像素,其差异最大为几个开尔文。本文的研究结果将促进多角度热红外传感器的未来发展。

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