首页> 外文期刊>Boletim de Ciências Geodésicas >COMPARATIVE ANALYSIS OF SPLIT-WINDOW AND SINGLE-CHANNEL ALGORITHMS FOR LAND SURFACE TEMPERATURE RETRIEVAL OF A PSEUDO-INVARIANT TARGET
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COMPARATIVE ANALYSIS OF SPLIT-WINDOW AND SINGLE-CHANNEL ALGORITHMS FOR LAND SURFACE TEMPERATURE RETRIEVAL OF A PSEUDO-INVARIANT TARGET

机译:分裂窗口和单通道算法的比较分析,用于伪不变靶的陆地温度检索

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摘要

Land surface temperature (LST) acquired from remote sensing observations is essential to monitor surface energy and water exchange processes at the land-atmosphere interface. Most LST retrieval methodologies are developed focusing on Northern hemisphere. Consequently, Southern hemisphere has a great need for investigating the performance of LST retrieval algorithms already consolidated in the literature. In this paper, we compared a Split-window (SW) and a Single-channel (SC) method to retrieve LST from Landsat 8 OLI/TIRS images in a dune field, Southern Brazil. To validate the results, the Atmospheric Correction Parameter Calculator (ACPC) tool and Radiative Transfer Equation (RTE) were used. Results demonstrated that both methodologies are in accordance with the RTE, despite they overestimated the LST. Analysis of variance (ANOVA) indicated that the means are not statistically significant (0.05 level). The correlations between LST retrieved and RTE were strong, producing R2 of 0.984 and 0.973 for the SW and SC, respectively, and RMSE values of 1.18 and 1.6. SW also exhibited the best values of MSD (±0.983) and Bias (0.773), thus reinforcing its superior performance. SW can be applied with an accuracy of 1.18 K in Southern Brazil, without needing complex modeling or specific radiosonde.
机译:从遥感观测中获得的陆地表面温度(LST)对于监测土地大气界面的表面能量和水交换过程至关重要。大多数LST检索方法都是在北半球的关注。因此,南半球对研究在文献中已经合并的LST检索算法的表现非常需要。在本文中,我们比较了分裂窗口(SW)和单通道(SC)方法,从Landsat 8 Oli / Tirs图像中检索到巴西南部的沙丘田中的LST。为了验证结果,使用了大气校正参数计算器(ACPC)工具和辐射传输方程(RTE)。结果表明,两种方法都符合RTE,尽管他们高估了LST。方差分析(ANOVA)表明该装置没有统计学意义(0.05级)。 LST检出和RTE之间的相关性强,SW和SC分别产生0.984和0.973的R2,RMS值为1.18和1.6。 SW还表现出MSD(±0.983)和偏置的最佳值(0.773),从而加强其优越的性能。 SW可以在巴西南部的1.18 k的精度应用,而无需复杂的建模或特定的无线电探测器。
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