Broadcast ephemerides for LEO augmentation satellites based on nonsingular elements
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- Type
- article
- Published
- 2021-07-22
- Cited by
- 24
- References
- 26
- OpenAlex
- https://openalex.org/W3186209653
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:236163482
Keywords
Ephemeris, Geodesy, Orbital elements, Eccentricity (behavior), Satellite
References
- Satellite Orbits: Models, Methods and Applications
- Broadcast versus precise ephemerides: a multi-GNSS perspective
- An 18-element GEO broadcast ephemeris based on non-singular elements
- Accuracy and reliability of multi-GNSS real-time precise positioning: GPS, GLONASS, BeiDou, and Galileo
- Analysis of Iridium-Augmented GPS for Floating Carrier Phase Positioning
- Performance Analysis of L2 and L5 CNAV Broadcast Ephemeris for Orbit Calculation
- Performance Evaluation of the Early CNAV Navigation Message
- Broadcast Ephemeris Parameters Fitting for GEO Satellites Based on Coordinate Transformation
- Fitting and extrapolating accuracy of GPS broadcast ephemeris
- Orbital Diversity for Satellite Navigation
- Leveraging Commercial Broadband LEO Constellations for Navigating
- Design and validation of broadcast ephemeris for low Earth orbit satellites
- LEO enhanced Global Navigation Satellite System (LeGNSS) for real-time precise positioning services
- LEO constellation-augmented multi-GNSS for rapid PPP convergence
- Performance Evaluation of the CNAV Broadcast Ephemeris
- Hybrid constellation design using a genetic algorithm for a LEO-based navigation augmentation system
- Study on Optimal Broadcast Ephemeris Parameters for GEO/IGSO Navigation Satellites
Cited by
- Position, Navigation, and Timing (PNT) Through Low Earth Orbit (LEO) Satellites: A Survey on Current Status, Challenges, and Opportunities
- A Flexible Ephemeris Representation for GNSS and Alternative PNT Signal Sources Using B-Splines
- Receiver architectures for positioning with low earth orbit satellite signals: a survey
- Simulations using LEO-PNT systems: A Brief Survey
- A Flexible Ephemeris Representation for Global Navigation Satellite Systems and Alternative Positioning, Navigation, and Timing Signal Sources Using B-Splines
- Ephemeris Error Modeling in Opportunistic LEO Satellite Tracking with Pseudorange and Doppler Measurements
- Evaluation of Orbit Errors and Measurement Corrections in Differential Navigation with LEO Satellites
- Demand and key technology for a LEO constellation as augmentation of satellite navigation systems
- Analysis of Satellite Ephemeris Error in Differential and Non-differential Navigation with LEO Satellites
- Ephemeris Error Correction for Tracking Non-Cooperative LEO Satellites with Pseudorange Measurements
- Simulations of Dedicated LEO-PNT Systems for Precise Point Positioning: Methodology, Parameter Analysis, and Accuracy Evaluation
- Augmentation message design for LEO-enhanced precise positioning: In-orbit performance assessment
- Performance analysis of LEO augmented GNSS precise point positioning from in-orbit CENTISPACETM satellites
- LOBEFIT: LEO satellite broadcast ephemeris fitting open-source software based on automatic differentiation technique
- Resource Allocation for Multisatellite Asynchronous Transmission in Integrated Communication and Navigation Networks
- Study on the Design of Broadcast Ephemeris Parameters for Low Earth Orbit Satellites
- Integrated Communication and Navigation Based on LEO Satellite Networks: A Survey
- User Equivalent Range Error and Positioning Accuracy Analysis for ToA-Based Techniques Using PRS and SSB in 5G/6G NTN
- GNSS-based real-time orbit determination and prediction for LEO-PNT ephemeris generation
- Positioning With LEO Satellites as Signals of Opportunity (SoOP): A Survey
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