Demand and key technology for a LEO constellation as augmentation of satellite navigation systems
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- Type
- article
- Published
- 2024-04-29
- Cited by
- 76
- References
- 36
- Access
- Open access
- OpenAlex
- https://openalex.org/W4396227396
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:269431185
Keywords
Constellation, Key (lock), Satellite constellation, Satellite, Computer science
References
- GPS Precision Orbit Determination from Combined Ground and Space-Borne Data
- Analysis of Iridium-Augmented GPS for Floating Carrier Phase Positioning
- GNSS receiver autonomous integrity monitoring (RAIM) algorithm based on robust estimation
- Enhanced orbit determination for BeiDou satellites with FengYun-3C onboard GNSS data
- Initial Assessment of Precise Point Positioning with LEO Enhanced Global Navigation Satellite Systems (LeGNSS)
- LEO constellation-augmented multi-GNSS for rapid PPP convergence
- Initial Assessment of the LEO Based Navigation Signal Augmentation System from Luojia-1A Satellite
- BeiDou Augmented Navigation from Low Earth Orbit Satellites
- Improved PPP Ambiguity Resolution with the Assistance of Multiple LEO Constellations and Signals
- Future GNSS constellations with optical inter-satellite links. Preliminary space segment analyses
- Concepts of Comprehensive PNT and Related Key Technologies
- Satellite-Ground Link Planning for LEO Satellite Navigation Augmentation Networks
- LEO Precise Orbit Determination with Inter-Satellite Links
- Review of the development of LEO navigation-augmented GNSS
- Resilient PNT Concept Frame
- Some Notes on Interoperability of GNSS
- Basic performance and future developments of BeiDou global navigation satellite system
- Orbital design of LEO navigation constellations and assessment of their augmentation to BDS
- Global capabilities of BeiDou Navigation Satellite System
- Reference system origin and scale realization within the future GNSS constellation “Kepler”
Cited by
- Estimation of Gyroscope Biases in MEMS IMU Based on Differential AR Modeling Testing on Synthetic and Real Data
- High-precision services of BeiDou navigation satellite system (BDS): current state, achievements, and future directions
- High-precision GPS orbit determination by integrating the measurements from regional ground stations and LEO onboard receivers
- Research on Design and Staged Deployment of LEO Navigation Constellation for MEO Navigation Satellite Failure
- A Performance Study on the Combination of Available GNSS and Potential LEO-PNT Constellations
- Research on Distributed Autonomous Timekeeping Algorithm for Low-Earth-Orbit Constellation
- Initial Design for Next-Generation BeiDou Integrity Subsystem: Space-Ground Integrated Integrity Monitoring
- Accurate Underwater Acoustic Positioning Considering Geometric Configuration
- GPU-Accelerated CNN Inference for Onboard DQN-Based Routing in Dynamic LEO Satellite Networks
- Comparison of Tropospheric Horizontal Gradients Modeling Methods in LEO Constellation Augmented GNSS Precise Point Positioning
- LEO-SOP Differential Doppler/INS Tight Integration Method Under Weak Observability
- Resilient satellite-based PNT system design and key technologies
- Single-epoch power positioning method for multi-beam LEO communication satellites
- Stepwise autonomous orbit determination of large LEO constellations by GNSS observations with partial inter-satellite ranging
- Differential Carrier Phase Positioning With System Error Corrections Based on Orbcomm Signals of Opportunity
- Construction Method for a Precision Power BeiDou Service Network Assisted by Low Earth Orbit Satellites
- Accuracy Degradation Rate of LEO Satellite Predicted Orbits Using Different POD Methods
- Ambiguity-resolved short-baseline positioning performance of LEO frequency-varying carrier phase signals: a feasibility study
- Influences of Discontinuous Attitudes on GNSS/LEO Integrated Precise Orbit Determination Based on Sparse or Regional Networks
- ARAIM Protection Level Optimization Based on Feedback-Structure Subset Grouping
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