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Assessment of multi-resolution and multi-sensor data for urban surface temperature retrieval

机译:评估城市表面温度检索的多分辨率和多传感器数据

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Data from three thermal sensors with different spatial resolution were assessed for urban surface temperature retrieval over the Yokohama City, Japan. The sensors are Thermal Airborne Broadband Imager (TABI), Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) and MODerate resolution Imaging Spectroradiometer (MODIS). Two algorithms were developed for land surface temperature (LST) retrieval from TABI image and ASTER thermal infrared (TIR) channels 13 and 14. In addition, ASTER LST and MODIS LST products were also collected. All the LST images were assessed by analyzing the relationship between LST and normalized difference vegetation index (NDVI) and by spatial distributions of LST profiles, derived from typical transects over the LST images. In this study, a strong negative relationship between LST and NDVI has been demonstrated although the degree of correlation between NDVI and LST varies slightly among the different LST images. Cross-validation among the LST images retrieved from the three thermal sensors of different spatial resolutions indicates that the LST images retrieved from the 2 channel ASTER data and a single band TABI thermal image using our developed algorithms are reliable. The LST images retrieved from the three sensors should have different potential to urban environmental studies. The MODIS thermal sensor can be used for the synoptic overview of an urban area and for studying urban thermal environment. The ASTER, with its TIR subsystem of 90-m resolution, allows for a more accurate determination of thermal patterns and properties of urban land use/land cover types, and hence, a more accurate determination of the LST. In consideration of the high heterogeneity of urban environment, the TABI thermal image, with a high spatial resolution of 2m, can be used for rendering and assessing complex urban thermal patterns and detailed distribution of LST at the individual house level more accurately.
机译:评估了来自三个具有不同空间分辨率的热传感器的数据,以获取日本横滨市的城市地表温度。传感器是热机载宽带成像仪(TABI),先进的星载热发射和反射辐射计(ASTER)和中等分辨率成像光谱仪(MODIS)。开发了两种算法用于从TABI图像和ASTER热红外(TIR)通道13和14检索地表温度(LST)。此外,还收集了ASTER LST和MODIS LST产品。通过分析LST和归一化植被指数(NDVI)之间的关系以及LST轮廓的空间分布来评估所有LST图像,LST轮廓的空间分布是从LST图像上的典型样条得出的。在这项研究中,尽管在不同的LST图像之间NDVI和LST之间的相关程度略有不同,但已证明LST和NDVI之间存在强烈的负相关关系。从三个具有不同空间分辨率的热传感器检索到的LST图像之间的交叉验证表明,使用我们开发的算法从2通道ASTER数据检索的LST图像和单波段TABI热图像是可靠的。从三个传感器获取的LST图像对于城市环境研究应具有不同的潜力。 MODIS热传感器可用于市区概况和研究城市热环境。 ASTER的TIR子系统分辨率为90米,可以更准确地确定城市土地利用/土地覆盖类型的热模式和特性,从而可以更准确地确定LST。考虑到城市环境的高度异质性,TABI热图像具有2m的高空间分辨率,可用于渲染和评估复杂的城市热模式以及更准确地在各个房屋级别上进行LST的详细分配。

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