International audienceThis paper presents an innovative method for obtaining a daily estimate of a qualitycontrolled aerosol optical thickness (AOT) of a vertical column of the atmosphere over the continents. Because properties of land surface are more stationary than the atmosphere, the temporal dimension is exploited for simultaneous retrieval of the surface and aerosol bidirectional reflectance distribution function (BRDF) coming from a kerneldriven reflectance model. Off-zenith geometry of illumination enhances the forward scattering peak of the aerosol, which improves the retrieval of AOT from the aerosol BRDF. The solution is obtained through an unconstrained linear inversion procedure and perpetuated in time using a Kalman filter. On...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
International audienceThis paper presents an innovative method for obtaining a daily estimate of a q...
International audienceThis paper presents an innovative method for obtaining a daily estimate of a q...
International audienceThis paper presents an innovative method for obtaining a daily estimate of a q...
International audienceThis paper presents an innovative method for obtaining a daily estimate of a q...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
International audienceThis paper presents an innovative method for obtaining a daily estimate of a q...
International audienceThis paper presents an innovative method for obtaining a daily estimate of a q...
International audienceThis paper presents an innovative method for obtaining a daily estimate of a q...
International audienceThis paper presents an innovative method for obtaining a daily estimate of a q...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...
The paper presents an innovative method to derive aerosol optical thickness (AOT) on a continental s...