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Showing 1 to 8 of 8 for “"Atmosphere-Ionosphere Coupling"”.

  1. GUCCI: Ground station Uplink Command and Control Interpreter

    … commanding software is required for the Lower Atmosphere/Ionosphere Coupling Experiment (LAICE) CubeSat to ensure best results. The ground station up-link software is created with this aim in mind. This will make the operation center for the LAICE project efficient. This will also help in …

    vt Repository record for GUCCI: Ground station Uplink Command and Control Interpreter (opens in a new tab)

  2. A Framework for Validation and Testing of a CubeSat Retarding Potential Analyzer

    … along with the calibration results for the Lower Atmosphere/Ionosphere Coupling Experiment (LAICE) CubeSat RPA. This paper presents a user-friendly and robust software control suite developed to read, parse, and interpret the data from the LAICE RPA. Electronics noise testing and analysis defines …

    vt Repository record for A Framework for Validation and Testing of a CubeSat Retarding Potential Analyzer (opens in a new tab)

  3. Firmware Development of the LAICE Instrument Interface Board (LIIB)

    The Lower Atmosphere/Ionosphere Coupling Experiment (LAICE) CubeSat mission includes the payload instruments that generate scientific data by interacting with the flight computer. The LAICE Instrument Interface Board (LIIB) is designed to interface with the payload instruments and the flight …

    vt Repository record for Firmware Development of the LAICE Instrument Interface Board (LIIB) (opens in a new tab)

  4. An Electrometer Design and Characterization for a CubeSat Neutral Pressure Instrument

    … to the conditions expected for the Lower Atmosphere/Ionosphere Coupling Experiment (LAICE) CubeSat mission. Laboratory test setups for measurements performed both under vacuum and at atmospheric pressure are documented in detail. Test procedures are presented to characterize the …

    vt Repository record for An Electrometer Design and Characterization for a CubeSat Neutral Pressure Instrument (opens in a new tab)

  5. Magnetic attitude control of LAICE satellite with aerodynamic stabilization

    The Lower Atmosphere Ionosphere Coupling Experiment (LAICE) is a NanoSatellite which will be performing in-situ measurements of neutral and ion densities in the mesosphere, lower thermosphere, and ionosphere and correlating them to measurements of gravity waves in the lower atmosphere. The …

    uiuc Repository record for Magnetic attitude control of LAICE satellite with aerodynamic stabilization (opens in a new tab)

  6. The Co-Volcanic Ionospheric Disturbances at Mt.Etna, Italy

    … to the dispersive nature for radio waves, the ionosphere affects the GNSS signals as a function of its electron density. By this condition the total electron content (TEC) of the ionosphere can be estimated from GNSS data. TEC fluctuations can be related, from above, to space weather dynamics …

    trento Repository record for The Co-Volcanic Ionospheric Disturbances at Mt.Etna, Italy (opens in a new tab)

  7. Development of ground and space based instrumentation for middle and upper atmospheric studies

    … neutral density and temperature in the upper atmosphere, into the lower thermosphere (>90 km). The scientific interest with this system is to obtain measurements of atmospheric tides, planetary and gravity wave amplitudes and phase in the lower thermosphere. Measurement of waves into the lower …

    uiuc Repository record for Development of ground and space based instrumentation for middle and upper atmospheric studies (opens in a new tab)

  8. Analysis of Ionospheric Data Sets to Identify Periodic Signatures Matching Atmospheric Planetary Waves

    … in introducing variability to the low-latitude ionosphere. To better understand this coupling, this study investigates times when oscillations seen in both atmospheric planetary waves and ionospheric data-sets have similar periodicity. The planetary wave data-set used are temperature …

    vt Repository record for Analysis of Ionospheric Data Sets to Identify Periodic Signatures Matching Atmospheric Planetary Waves (opens in a new tab)