Retrieving the aerosol lidar ratio profile by combining ground- and space-based elastic lidars.
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Summary
This work proposed a method for retrieving the aerosol lidar ratio profile by combining simultaneous ground- and space-based elastic lidars and demonstrated that the method is robust and can obtain accurate lidar ratios and extinction coefficient profiles.
- Type
- article
- Published
- 2012-02-15
- Cited by
- 23
- References
- 11
- OpenAlex
- https://openalex.org/W2012940346
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:12411827
Keywords
Lidar, Aerosol, Remote sensing, Environmental science, Atmospheric optics
References
- The May/June 2008 Saharan dust event over Munich: Intensive aerosol parameters from lidar measurements
- Retrieval of atmospheric particles optical properties by combining ground-based and spaceborne lidar elastic scattering profiles.
- Retrieval of aerosol extinction-to-backscatter ratios by combining ground-based and space-borne lidar elastic scattering measurements.
- Initial performance assessment of CALIOP
- Lidar calibration experiments
- Double-ended lidar technique for aerosol studies.
- Mesoscale Variations of Tropospheric Aerosols
- Stable analytical inversion solution for processing lidar returns.
- Bipath method as a way to measure the spatial backscatter and extinction coefficients with lidar.
- Analysis of atmospheric lidar observations: some comments.
- Determination of aerosol extinction-to-backscatter ratios from simultaneous ground-based and spaceborne lidar measurements.
Cited by
- Approach for selecting boundary value to retrieve Mie-scattering lidar data based on segmentation and two-component fitting methods.
- Macrophysical and optical properties of clouds over East Asia measured by CALIPSO
- Long-Term Measurement for Low-Tropospheric Water Vapor and Aerosol by Raman Lidar in Wuhan
- Anti-noise algorithm of lidar data retrieval by combining the ensemble Kalman filter and the Fernald method.
- Linear segmentation algorithm for detecting layer boundary with lidar.
- Improved method for retrieving the aerosol optical properties without the numerical derivative for Raman-Mie lidar
- Investigating the impact of haze on MODIS cloud detection
- De-noising and retrieving algorithm of Mie lidar data based on the particle filter and the Fernald method.
- Pull-Based Modeling and Algorithms for Real-Time Provision of High-Frequency Sensor Data from Sensor Observation Services
- Observation of clouds macrophysical characteristics in China by CALIPSO
- Evaluating the Governing Factors of Variability in Nocturnal Boundary Layer Height Based on Elastic Lidar in Wuhan
- Two-wavelength depolarization Mie Lidar for tropospheric aerosol measurements
- On-site ocean horizontal aerosol extinction coefficient inversion under different weather conditions on the Bo-hai and Huang-hai Seas
- Aerosol characteristics inversion based on the improved lidar ratio profile with the ground-based rotational Raman–Mie lidar
- Field-compensated tunable Mach-Zehnder interferometer for a multi-mode high-spectral-resolution lidar in the application of aerosol measurements
- Characteristics of the planetary boundary layer above Wuhan, China based on CALIPSO
- An RBF neural network approach for retrieving atmospheric extinction coefficients based on lidar measurements
- Denoising and retrieval algorithm based on a dual ensemble Kalman filter for elastic lidar data
- Noise reduction and retrieval by modified lidar inversion method combines joint retrieval method and machine learning
- Four-year ground-based observations of the aerosol effects on cloud base height in Wuhan, China
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