Articles | Volume 5, issue 4
https://doi.org/10.5194/amt-5-789-2012
https://doi.org/10.5194/amt-5-789-2012
Research article
 | 
23 Apr 2012
Research article |  | 23 Apr 2012

Progress in turbulence detection via GNSS occultation data

L. B. Cornman, R. K. Goodrich, P. Axelrad, and E. Barlow

Related subject area

Subject: Others (Wind, Precipitation, Temperature, etc.) | Technique: Remote Sensing | Topic: Data Processing and Information Retrieval
Dual-frequency spectral radar retrieval of snowfall microphysics: a physics-driven deep-learning approach
Anne-Claire Billault-Roux, Gionata Ghiggi, Louis Jaffeux, Audrey Martini, Nicolas Viltard, and Alexis Berne
Atmos. Meas. Tech., 16, 911–940, https://doi.org/10.5194/amt-16-911-2023,https://doi.org/10.5194/amt-16-911-2023, 2023
Short summary
High-resolution 3D winds derived from a modified WISSDOM synthesis scheme using multiple Doppler lidars and observations
Chia-Lun Tsai, Kwonil Kim, Yu-Chieng Liou, and GyuWon Lee
Atmos. Meas. Tech., 16, 845–869, https://doi.org/10.5194/amt-16-845-2023,https://doi.org/10.5194/amt-16-845-2023, 2023
Short summary
Atmospheric boundary layer height from ground-based remote sensing: a review of capabilities and limitations
Simone Kotthaus, Juan Antonio Bravo-Aranda, Martine Collaud Coen, Juan Luis Guerrero-Rascado, Maria João Costa, Domenico Cimini, Ewan J. O'Connor, Maxime Hervo, Lucas Alados-Arboledas, María Jiménez-Portaz, Lucia Mona, Dominique Ruffieux, Anthony Illingworth, and Martial Haeffelin
Atmos. Meas. Tech., 16, 433–479, https://doi.org/10.5194/amt-16-433-2023,https://doi.org/10.5194/amt-16-433-2023, 2023
Short summary
Assessing and mitigating the radar–radar interference in the German C-band weather radar network
Michael Frech, Cornelius Hald, Maximilian Schaper, Bertram Lange, and Benjamin Rohrdantz
Atmos. Meas. Tech., 16, 295–309, https://doi.org/10.5194/amt-16-295-2023,https://doi.org/10.5194/amt-16-295-2023, 2023
Short summary
Spectral replacement using machine learning methods for continuous mapping of the Geostationary Environment Monitoring Spectrometer (GEMS)
Yeeun Lee, Myoung-Hwan Ahn, Mina Kang, and Mijin Eo
Atmos. Meas. Tech., 16, 153–168, https://doi.org/10.5194/amt-16-153-2023,https://doi.org/10.5194/amt-16-153-2023, 2023
Short summary

Cited articles

Beylkin, G. and Oristaglio, M .L.: Distorted-wave Born and distorted-wave Rytov approximations, Opt. Commun., 53, 213–216, 1985.
Clifford, S. A. and Lataitis, R. J.: Mutual coherence function for line-of-sight microwave propagation through a turbulent atmosphere, Radio Sci., 20, 221–227, 1985.
Clifford, S. A. and Strohbehn, J. W.: The theory of microwave line-of-sight propagation through a turbulent atmosphere, IEEE T. Antenn. Propag., AP-18, 264–274, 1970.
Conker, R. S., Bakry El-Arini, M., Hegarty, C. J., and Hsiao, T.: Modeling the effects of ionospheric scintillation of GPS/Satellite-based Augmentation System availability, Radio Sci., 38, 1001, https://doi.org/10.1029/2000RS002604, 2003.
Cornman, L. B., Frehlich, R., and Praskovskaya, E.: The detection of upper-level turbulence via GPS occultation methods, in: Occultations for Probing Atmosphere and Climate, edited by: Kirchengast, G., Springer-Verlag Berlin Heidelberg, 2004.