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Titlebook: Quantitative Remote Sensing in Thermal Infrared; Theory and Applicati Huajun Tang,Zhao-Liang Li Book 2014 Springer-Verlag Berlin Heidelberg

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Applications of Thermal Remote Sensing in Agriculture Drought Monitoring and Thermal Anomaly Detectrge areas and therefore have high socioeconomic costs. These impacts have led to increasing attention to drought monitoring. Monitoring droughts at the regional scale is of primary importance for water planning and management to reduce possible impacts on crop production.
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Introduction,ensing refers to the use of both the force fields (such as gravity and magnetism) and electromagnetic spectrum to detect, classify, and identify the objects or events. In the restricted usage, the term remote sensing generally refers to the use of electromagnetic spectrum to acquire information abou
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Radiometric Calibration in Thermal Infrared, as the process of quantitatively defining the system response to known, controlled signal inputs (Belward 1999). The main fundamental aspects that need to be calibrated are the sensor system’s response to electromagnetic radiation as a function of (1) wavelength and/or spectral band (spectral respo
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Estimation and Validation of Evapotranspiration from Thermal Infrared Remote Sensing Data,urface evapotranspiration (ET, or latent heat flux, LE, in W/m.) controls the water and energy transfer in the interface between land surface and atmosphere (Idso et al. 1975; Brutsaert 1986; Su 2002; Oki and Kanae 2006). Nowadays, measuring directly the actual ET remains unresolved over large heter
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Applications of Thermal Remote Sensing in Agriculture Drought Monitoring and Thermal Anomaly Detectpply and consequently have substantial effects on agriculture and socioeconomic activities (Riebsame et al. 1991). The severity of drought depends on its duration, intensity, spatial extent, and local socioeconomic conditions. Climate change due to global warming has altered precipitation patterns (
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