Study on Optimal Broadcast Ephemeris Parameters for GEO/IGSO Navigation Satellites
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Summary
This paper proposes new sets of suitable broadcast ephemeris parameters for geosynchronous (GEO) and inclined geos asynchronous (IGSO) navigation satellites (NSs) and presents common parameter sets for both IGSO and GEO for compatibility and uniforms.
- Type
- article
- Published
- 2020-11-01
- Cited by
- 9
- References
- 35
- Access
- Open access
- OpenAlex
- https://openalex.org/W3101018122
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:227068312
Keywords
Ephemeris, Geosynchronous orbit, Geodesy, Remote sensing, Computer science
References
- Conversion of Osculating Orbital Elements to Mean Orbital Elements
- Statistical Characterization of GLONASS Broadcast Ephemeris Errors
- The BeiDou Navigation Message
- A nonsingular set of orbit elements
- On the singularity problem in orbital mechanics
- Optimal design of broadcast ephemeris parameters for a navigation satellite system
- Navigation message designing with high accuracy for NAV
- The performance comparison between GPs and BeiDou‐2/compass: A perspective from Asia
- Broadcast versus precise ephemerides: a multi-GNSS perspective
- An 18-element GEO broadcast ephemeris based on non-singular elements
- Initial assessment of the COMPASS/BeiDou-2 regional navigation satellite system
- The Effects of Orbital Perturbation on Geosynchronous Synthetic Aperture Radar Imaging
- IRNSS Orbit Determination and Broadcast Ephemeris Assessment
- Orbital motion
- An improved ephemeris algorithm of Beidou GEO satellite for user
- Method of Calculating Numerical Derivative of Jacobin Matrix for Fitting Algorithm of GPS Broadcast Ephemeris Parameters
- Geostationary Satellites Collocation
- Numerical Analysis of Orbital Perturbation Effects on Inclined Geosynchronous SAR
- Galileo Signals and the Open Service Signal-in-Space Interface Control Document
- Broadcast Ephemeris Model of the BeiDou Navigation Satellite System
Cited by
- A broadcast ephemeris design of LEO navigation augmentation satellites based on the integration-type ephemeris model
- Broadcast ephemerides for LEO augmentation satellites based on nonsingular elements
- An optimal design of the broadcast ephemeris for LEO navigation augmentation systems
- An indoor positioning system using virtual orbit GPS signal simulator
- A Study Regarding the Impact of Navigation Data Manipulation on Unmanned Aerial Vehicle GNSS Sensors
- Decadal evolution of GPS, GLONASS, and Galileo mean orbital elements
- Design of the broadcast ephemerides for the Lunar Communication and Navigation Services system
- A Novel Spaceborne Antenna Repositioning Method for Reliable Communication in Inclined Satellites
- Study on the Design of Broadcast Ephemeris Parameters for Low Earth Orbit Satellites
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