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Precise GNSS Positioning and Navigation: Methods, Challenges, and Applications

Precise GNSS Positioning and Navigation: Methods, Challenges, and Applications

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The research scope of this reprint mainly focuses on GNSS data processing methods; GNSS applications; precise GNSS positioning and navigation; theories, models, and methods for processing wojGNSS errors; multi-GNSS positioning technologies; positioning and navigation methods under challenging environments; and low-cost GNSS positioning and navigation.

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Keywords

  • Android
  • ASV-PWV model
  • B1C/B2a frequencies
  • B1I/B3I frequencies
  • BDS
  • BDS-3
  • BDS-3 new signals
  • Beacons selection
  • BeiDou-3 Navigation Satellite System
  • clock offsets estimated
  • deformation monitoring
  • differential inter-system bias (DISB)
  • ERA5
  • Galileo
  • GNSS
  • GNSS network solution
  • GNSS/INS sensors
  • GPS
  • GPS/BDS
  • high-rate GNSS
  • History of engineering & technology
  • iGMAS
  • independent baseline
  • indoor positioning
  • Inertial Navigation Pystem (INS)
  • inter-satellite links
  • kinematic-trajectory acquisition
  • minimum spanning tree
  • mobile mapping system (MMS)
  • multi-baseline solution
  • multi-GNSS
  • n/a
  • observation density
  • observation-max
  • odometer
  • positioning and navigation
  • positioning performance
  • PPP
  • PPP-AR
  • PPP-B2b service
  • precise orbits
  • Qinghai Tibet Plateau
  • radiosonde
  • real-time clock offset
  • real-time kinematic (RTK) positioning
  • real-time Precise Point Positioning (RT-PPP)
  • receiver channel-dependent bias
  • relative positioning
  • RT-PPP
  • RTK
  • shortest
  • signal anomaly detection
  • single point positioning (SPP)
  • single-/dual-frequency RT-PPP
  • Smartphone Xiaomi Mi8
  • Structural health monitoring
  • Technology, engineering, agriculture
  • Technology: general issues
  • tightly coupled integration
  • two-way satellite time and frequency transfer
  • u-blox ZED-F9P and ZED-F9R

Links

DOI: 10.3390/books978-3-0365-7623-7

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