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热红外遥感地表温度与发射率地面验证进展
引用本文:朱金顺,任华忠,叶昕,曾晖,聂婧,蒋晨琛,郭金鑫. 热红外遥感地表温度与发射率地面验证进展[J]. 遥感学报, 2021, 25(8): 1538-1566
作者姓名:朱金顺  任华忠  叶昕  曾晖  聂婧  蒋晨琛  郭金鑫
作者单位:1.北京大学 遥感与地理信息系统研究所, 北京 100871;2.空间信息集成与3S工程应用北京市重点实验室, 北京 100871
基金项目:国家自然科学基金(编号: 41771369)
摘    要:地表温度与发射率是地表—大气系统长波辐射和潜热通量交换的直接驱动力,是描述区域和全球尺度上地表能量平衡与水平衡的重要参数,其时空变化信息在气象预测、气候变化、水循环、地质勘探、农林监测和城市热环境等诸多领域具有广泛的应用.热红外遥感作为当前获取区域或全球尺度上地表温度和发射率的最有效手段之一,相较于传统的地面点位测量方...

关 键 词:热红外遥感  地表温度  发射率  地面验证  真实性检验
收稿时间:2021-05-12

Ground validation of land surface temperature and surface emissivity from thermal infrared remote sensing data
ZHU Jinshun,REN Huazhong,YE Xin,ZENG Hui,NIE Jing,JIANG Chenchen,GUO Jinxin. Ground validation of land surface temperature and surface emissivity from thermal infrared remote sensing data[J]. Journal of Remote Sensing, 2021, 25(8): 1538-1566
Authors:ZHU Jinshun  REN Huazhong  YE Xin  ZENG Hui  NIE Jing  JIANG Chenchen  GUO Jinxin
Affiliation:1.Institute of Remote Sensing and Geographical Information System, School Earth and Space Sciences, Beijing 100871, China;2.Beijing Key Laboratory of Spatial Information Integration and Its Application, Beijing 100871, China
Abstract:Land Surface Temperature (LST) and Land Surface Emissivity (LSE) are the direct driving force of long wave radiation and latent heat flux exchange at the surface-atmosphere interface, which are also two important parameters on surface energy budget balance and water balance at regional or global scales, its temporal and spatial variations on surface-atmosphere interface have a wide range of applications on weather forecasting, climate change, water cycle, geological exploration, agriculture, forestry monitoring and the urban thermal environment research, and many other scientific fields. Remote sensing provides an effective approach to obtain LST and LSE at global scale rather than point measurements for its rather wider spatial coverage and temporal revisit convenience. The validation of quantitative retrieval on LST and LSE products is conducive to find the defects of remote sensing data processing or drawbacks on retrieval algorithms, as well as clarify the accuracy and uncertainty of the operational products, which is of great convenience for the application and popularity of these products. In this paper, firstly different definitions of LST and LSE are reviewed, and then the scientific connotation of LST and LSE which can be retrieved from thermal infrared remote sensing data and measured from in-situ experiments is explained. The theoretical background, such as radiative transfer theory and methods of LST and LSE retrieval from remote sensing data are then summarized and outlined. After that, the framework of LST and LSE validation are summarized systematically, the validation metrics of LST and LSE derived from remotes sensing data including accuracy, precision, uncertainty, completeness and stability is constructed. Based on the validation framework, the methods of ground validation for LST and LSE are introduced (including directly validation and indirectly comparison), and followed by the methods of ground measurements of LST or related auxiliary data. The method of scale conversion method from point level to pixel level for heterogeneous and non-isothermal surfaces are emphasized and analyzed, and the main error sources of LST validation and LSE validation are discussed, respectively. A summarization of the main sites or networks for the validation of LST and LSE is conducted and the spatial distribution and the main characteristics (such as heterogeneity, land cover) of the typical LST and LSE validation sites or networks are briefly analyzed. The current LST and LSE products derived from satellite remote sensing data, which utilize the abovementioned validation sites or networks are summarized to report their validation accuracy or uncertainty, and related development on validation of LST and LSE are reviewed. Finally, some problems of validation of LST and LSE are also presented, and then the future outlook and trends of validation are outlined and justified.
Keywords:thermal infrared remote sensing  land surface temperature  emissivity  ground validation  verification
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