Abstract:- All the factors of atmospheric environment that influence the transmission of infrared radiation were analyzed in detail in the paper. Taking horizontally varying atmospheric property into consideration, a 3D model of atmospheric transmission of infrared radiation is established based on MODTRAN4. Moreover, the methods of calculating the ratio of atmospheric transmission, path radiation and single scatter solar radiation are presented. This 3D model is running by using the spectral database generated by MODTRAN4. It can handle attenuation of infrared radiation through the 3D atmosphere when target is below 60km. Implementation details are also presented
Note:Equations which consider the effect of non-horizontal surfaces on the infrared radiative fluxes...
International audienceThermal heat transfers, including solar and infrared radiation in cities, are ...
A high spectral resolution thermal infrared radiation transfer program has been developed. It uses t...
The quantification of atmospheric effects on the solar radiation measured by a spaceborne or airborn...
Radiation is the ultimate source of energy that drives our weather and climate. It is also the funda...
The aim of this paper is to discuss different models that describe atmospheric transmission in the i...
Afin de modéliser l'absorption dans le traitement des transferts radiatifs en milieu atmosphérique, ...
In the field of target detection, the simulation of the camera FOV (field of view) background is a s...
Parameterization programs involving infrared and solar radiation transfer in clear and cloudy atmosp...
This paper presents a proposed method for predicting the transmittance of aerosol in the atmosphere ...
peer reviewedAn empirical line-by-line model for the infrared solar transmittance spectrum is presen...
The infrared atmospheric background modeling can be considered as one of the important key factor to...
The investigation is concerned with the Earth's atmosphere, remote observation systems. The aim to b...
Abstract: We introduced an approach to simulate and separate atmospheric contribution in ground-bas...
This supplement provides several additions and updates to the LOWTRAN 3 computer code, which can be ...
Note:Equations which consider the effect of non-horizontal surfaces on the infrared radiative fluxes...
International audienceThermal heat transfers, including solar and infrared radiation in cities, are ...
A high spectral resolution thermal infrared radiation transfer program has been developed. It uses t...
The quantification of atmospheric effects on the solar radiation measured by a spaceborne or airborn...
Radiation is the ultimate source of energy that drives our weather and climate. It is also the funda...
The aim of this paper is to discuss different models that describe atmospheric transmission in the i...
Afin de modéliser l'absorption dans le traitement des transferts radiatifs en milieu atmosphérique, ...
In the field of target detection, the simulation of the camera FOV (field of view) background is a s...
Parameterization programs involving infrared and solar radiation transfer in clear and cloudy atmosp...
This paper presents a proposed method for predicting the transmittance of aerosol in the atmosphere ...
peer reviewedAn empirical line-by-line model for the infrared solar transmittance spectrum is presen...
The infrared atmospheric background modeling can be considered as one of the important key factor to...
The investigation is concerned with the Earth's atmosphere, remote observation systems. The aim to b...
Abstract: We introduced an approach to simulate and separate atmospheric contribution in ground-bas...
This supplement provides several additions and updates to the LOWTRAN 3 computer code, which can be ...
Note:Equations which consider the effect of non-horizontal surfaces on the infrared radiative fluxes...
International audienceThermal heat transfers, including solar and infrared radiation in cities, are ...
A high spectral resolution thermal infrared radiation transfer program has been developed. It uses t...