Ceilometers are originally designed for cloud base height monitoring. Since a few years, the number of ceilometers available worldwide is rapidly increasing, and these simple backscatter lidars are investigated to be used for aerosol research. This study presents an assessment of the potential of CYY-2B ceilometer for the quantitative retrieval of aerosol properties. The signal-to-noise ratio of the ceilometer is calculated, and the effective height of inversion is determined. It is shown that the effective height of the ceilometer for backscatter coefficient profile inversion is 3-4 km at night and about 1.5–2 km during the day, which is lower than that of the micropulse lidar (MPL) system. The accuracy of the backscatter coefficient profi...
Backscattered power data from the Doppler LIght Detection And Ranging (LIDAR) systems at the Hong Ko...
An intercomparison of aerosol backscatter lidar algorithms was performed in 2001 within the framewor...
We present the evaluation activity of the European Aerosol Research Lidar Network (EARLINET) for the...
Continuous observation and quantitative retrieval of aerosol backscatter coefficients are important ...
With the establishment of ceilometer networks by national weather services, a discussion commenced t...
Since a few years, the number of active remote sensing systems has been rapidly increasing as nation...
The potential of a new generation of ceilometer instruments for aerosol monitoring has been studied ...
With the rapidly growing number of automated single-wavelength backscatter lidars (ceilometers), the...
Cloud-base height (CBH) is a basic cloud parameter but has not been measured accurately, especially ...
This dataset consists of attenuated backscatter coefficient (beta) measured by the 905 nm Vaisala CT...
Ceilometer technology is increasingly applied to the monitoring and the characterization of troposph...
Three algorithms for estimating the boundary layer heights are assessed: an aerosol gradient method,...
International audienceThe solution of the lidar equation is an ill-posed problem that requires nonli...
International audienceThe determination of the depth of daytime and nighttime mixing layers must be ...
Backscattered power data from the Doppler LIght Detection And Ranging (LIDAR) systems at the Hong Ko...
An intercomparison of aerosol backscatter lidar algorithms was performed in 2001 within the framewor...
We present the evaluation activity of the European Aerosol Research Lidar Network (EARLINET) for the...
Continuous observation and quantitative retrieval of aerosol backscatter coefficients are important ...
With the establishment of ceilometer networks by national weather services, a discussion commenced t...
Since a few years, the number of active remote sensing systems has been rapidly increasing as nation...
The potential of a new generation of ceilometer instruments for aerosol monitoring has been studied ...
With the rapidly growing number of automated single-wavelength backscatter lidars (ceilometers), the...
Cloud-base height (CBH) is a basic cloud parameter but has not been measured accurately, especially ...
This dataset consists of attenuated backscatter coefficient (beta) measured by the 905 nm Vaisala CT...
Ceilometer technology is increasingly applied to the monitoring and the characterization of troposph...
Three algorithms for estimating the boundary layer heights are assessed: an aerosol gradient method,...
International audienceThe solution of the lidar equation is an ill-posed problem that requires nonli...
International audienceThe determination of the depth of daytime and nighttime mixing layers must be ...
Backscattered power data from the Doppler LIght Detection And Ranging (LIDAR) systems at the Hong Ko...
An intercomparison of aerosol backscatter lidar algorithms was performed in 2001 within the framewor...
We present the evaluation activity of the European Aerosol Research Lidar Network (EARLINET) for the...