The effect of the Earth’s ionosphere represents the single largest contribution to the Global Navigation Satellite System (GNSS) error budget and abnormal ionospheric conditions can impose serious degradation on GNSS system functionality, including integrity, accuracy and availability. With the growing reliance on GNSS for many modern life applications, actionable ionospheric forecasts can contribute to the understanding and mitigation of the impact of the ionosphere on our technology based society. In this context, the Ionosphere Prediction Service (IPS) project was set up to design and develop a prototype platform to translate the forecast of the ionospheric effects into a service customized for specific GNSS user communities. To achieve t...
Radio signals transmitted by modern communication, nav- igation and Earth observation systems are i...
The paper reviews the current state of GNSS-based detection, monitoring and forecasting of ionospher...
The Space Weather Application Center Ionosphere (SWACI) is a joint project of two DLR institutes - t...
The effect of the Earth's ionosphere represents the single largest contribution to the Global Naviga...
The Ionosphere Prediction Service (IPS), project funded by European Commission within Horizon 2020 a...
The aim of the Ionosphere Prediction Service (IPS) project is to design and develop a prototype plat...
Space weather events related to solar activity can affect both ground and space-based infrastructur...
The ionosphere impacts transionospheric radio signals by delay, refraction and diffraction. This inc...
Ionospheric Space Weather can adversely degrade the performance of radio systems in communication, s...
The technological infrastructure and economy of many countries all over the world is increasingly de...
Disruptions of satellite missions and modern communication, navigation and remote sensing systems ca...
Space Weather events (e.g. Solar Flares, Solar Radio Bursts or Solar Storms) and/or special regional...
The Earth’s ionosphere is a magnetoionic medium imbedded in a background neutral atmosphere, exhibit...
Radio signals transmitted by modern communication, navigation and Earth observation systems can be h...
Discussed are the capacities and research steps that should be developed in Europe by 2020‐2025 for ...
Radio signals transmitted by modern communication, nav- igation and Earth observation systems are i...
The paper reviews the current state of GNSS-based detection, monitoring and forecasting of ionospher...
The Space Weather Application Center Ionosphere (SWACI) is a joint project of two DLR institutes - t...
The effect of the Earth's ionosphere represents the single largest contribution to the Global Naviga...
The Ionosphere Prediction Service (IPS), project funded by European Commission within Horizon 2020 a...
The aim of the Ionosphere Prediction Service (IPS) project is to design and develop a prototype plat...
Space weather events related to solar activity can affect both ground and space-based infrastructur...
The ionosphere impacts transionospheric radio signals by delay, refraction and diffraction. This inc...
Ionospheric Space Weather can adversely degrade the performance of radio systems in communication, s...
The technological infrastructure and economy of many countries all over the world is increasingly de...
Disruptions of satellite missions and modern communication, navigation and remote sensing systems ca...
Space Weather events (e.g. Solar Flares, Solar Radio Bursts or Solar Storms) and/or special regional...
The Earth’s ionosphere is a magnetoionic medium imbedded in a background neutral atmosphere, exhibit...
Radio signals transmitted by modern communication, navigation and Earth observation systems can be h...
Discussed are the capacities and research steps that should be developed in Europe by 2020‐2025 for ...
Radio signals transmitted by modern communication, nav- igation and Earth observation systems are i...
The paper reviews the current state of GNSS-based detection, monitoring and forecasting of ionospher...
The Space Weather Application Center Ionosphere (SWACI) is a joint project of two DLR institutes - t...