Monitoring the water vapor content at high spatio-temporal resolution using a network of low-cost multi-GNSS receivers

G Marut, T Hadas, J Kaplon, E Trzcina… - IEEE Transactions on …, 2022 - ieeexplore.ieee.org
The global navigation satellite system (GNSS) has the capacity for remote sensing of water
vapor content in the atmosphere. Post-processing of GNSS data can provide integrated …

Evaluation of an Automatic Meteorological Drone Based on a 6-Month Measurement Campaign

M Hervo, G Romanens, G Martucci, T Weusthoff… - Atmosphere, 2023 - mdpi.com
From December 2021 to May 2022, MeteoSwiss and Meteomatics conducted a proof of
concept to demonstrate the capability of automatic drones to provide data of sufficient quality …

Improving GNSS Meteorology by Fusing Measurements of Several Co-located Receivers on the Observation Level

R Wang, G Marut, T Hadaś… - IEEE Journal of Selected …, 2024 - ieeexplore.ieee.org
Zenith wet delay (ZWD) estimation is a key component for the global navigation satellite
system (GNSS) meteorology. At present, the zenith hydrostatic delay can be computed with …