Geoscientific instrumentation, methods and data systems · 2014 · 38 citations · 19 references
EngineeringGlobal Navigation Satellite SystemEarth ScienceGeophysicsSatellite MeasurementCalibrationAtmospheric ScienceEast Antarctic PlateauInstrumentationMagnetic Meridian ChainGeodesyGeostationary OrbitSatellite Signal ProcessingGeographySpatial Data AcquisitionRemote Polar InstrumentationSpace WeatherSatellite Navigation SystemsAerospace EngineeringRemote SensingPolar Science
Abstract. We present the development considerations and design for ground-based instrumentation that is being deployed on the East Antarctic Plateau along a 40° magnetic meridian chain to investigate interhemispheric magnetically conjugate geomagnetic coupling and other space-weather-related phenomena. The stations are magnetically conjugate to geomagnetic stations along the west coast of Greenland. The autonomous adaptive low-power instrument platforms being deployed in the Antarctic are designed to operate unattended in remote locations for at least 5 years. They utilize solar power and AGM storage batteries for power, two-way Iridium satellite communication for data acquisition and program/operation modification, support fluxgate and induction magnetometers as well as a dual-frequency GPS receiver and a high-frequency (HF) radio experiment. Size and weight considerations are considered to enable deployment by a small team using small aircraft. Considerable experience has been gained in the development and deployment of remote polar instrumentation that is reflected in the present generation of instrumentation discussed here. We conclude with the lessons learned from our experience in the design, deployment and operation of remote polar instrumentation.
19
V. Angelopoulos · Space Science Reviews · 2008 · 1.5K citations
Ionospheric Scintillation Monitoring Using Commercial Single Frequency C/A Code Receivers
A. J. Van Dierendonck, J. A. Klobuchar, Quyen Hua · Proceedings of the 6th International Technical Meeting of the Satellite Division of The Institute of Navigation (ION GPS 1993) · 1993 · 362 citations
Scintillation Effects, Engineering, Global Navigation Satellite System +20
The THEMIS Array of Ground-based Observatories for the Study of Auroral Substorms
S. B. Mende, S. E. Harris, H. U. Frey et al. · Space Science Reviews · 2008 · 329 citations