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The Meteosat Third Generation (MTG) programme launched its first satellite, Meteosat-12, in 2022, and featured a number of changes over its predecessors in support of its mission to gather data for weather forecasting and climate monitoring. The MTG satellites are three-axis stabilised rather than spin stabilised, giving greater flexibility in ...
The propulsion system was then passivated and the satellite deactivated. Meteosat-9 is also stationed over the Indian Ocean, arriving at 45.5°E on 20 April 2022 and it took over as prime IODC spacecraft on 1 June 2022 (replacing Meteosat-8). Meteosat-10 and -11 are located over Africa with various differences in operational configuration.
The scientific technology is quickly evolving and, in 1995, the METEOSAT satellite localized at 36.000 km above the Earth provided the first high quality images every half-hour. In 2001, the Royal Meteorological Institute acquired a brand new radar able to measure all kind of precipitation within a range of 240 km.
Carried five instruments which uses radar and sensors of visible infrared light to closely monitor precipitation. [39] UARS: Inactive NASA: 1991 Upper Atmosphere Research Satellite. Part of NASA's Earth-Sun System Missions. Retired 2005. Vanguard 2: Inactive NRL: 1959 Vanguard 2E. The first weather satellite, designed to measure cloud cover.
MyRadar is a free weather forecasting application developed by Andy Green and his Orlando, Florida-based company ACME AtronOmatic (ACME). The app began operations in 2008 and ran on government-provided weather and radar data for its first decade. In 2019, ACME launched personal satellites to improve predictions of ongoing weather.
The Meteosat-2 geostationary weather satellite began operationally to supply imagery data on 16 August 1981. Eumetsat has operated the Meteosats since 1987. The Meteosat visible and infrared imager (MVIRI) , three-channel imager: visible, infrared and water vapour; It operates on the first generation Meteosat, Meteosat-7 being still active.
The launch of GOES-N, which was renamed GOES-13 after attaining orbit. The Geostationary Operational Environmental Satellite (GOES), operated by the United States' National Oceanic and Atmospheric Administration (NOAA)'s National Environmental Satellite, Data, and Information Service division, supports weather forecasting, severe storm tracking, and meteorology research.
The AN/UMQ-13(V) system or MARK IV-B, is a meteorological data station that is owned and operated by the United States Space Force. [1] [2] This system allows meteorologists from around the globe to analyze and forecast meteorological data from polar orbiting satellites belonging to, National Oceanic and Atmospheric Administration (NOAA), [3] Defense Meteorological Satellite Program (DMSP). [4]
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