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Real-time kinematic positioning
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Related lectures (15)
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GPS Error Analysis
Explores GPS error analysis, signal acquisition, positioning techniques, and DGPS systems.
Performance Comparison of Differential GNSS in Finland
Discusses the performance of differential GNSS systems in Finland, highlighting the superiority of DGNSS in challenging environments.
Combination of Observations Across Types
Covers the combination of absolute and relative positioning observations across different types to improve accuracy.
Modeling Errors and Corrections: EGNOS Context and Architecture
Explores modeling errors and corrections in EGNOS, focusing on precise positioning and error estimation for improved navigation.
Mechanical Design: Principles and Applications
Explores the design process, load paths, spatial vectors, stiffness matrices, and common couplings in mechanical design.
Satellite Location: Reflection Surface Analysis
Explores satellite reflection surface analysis for precise positioning and its implications for tsunami prediction.
GNSS Interference Analysis: Impact on Positioning Accuracy
Explores the impact of extreme solar events on GPS positioning accuracy, revealing errors and vulnerabilities during geomagnetic storms and sun flares.
Assembly: Process Integration
Explores the significance of assembly, addressing tolerances, labor costs, precision engineering, and design principles for efficient manufacturing.
GPS Signal Structure: Evolution and Applications
Explores the evolution and structure of GPS signals, satellite tracking, and the GPS coordinate system.
EGNOS - Modeling Errors
Explores modeling errors and corrections in the EGNOS system for improved positioning accuracy.
GNSS Corrections and Monitoring
Covers GNSS corrections, monitoring, EGNOS principles, and error estimation modeling.
Assembly: Mechanism Theory
Covers the problem statement of assembly, precision requirements, common couplings, stability, and spatial vectors.
Geodesy Fundamentals: Coordinate Systems and GPS Applications
Introduces geodesy, focusing on coordinate systems and GPS technology applications.
Relative Positions in Space
Covers the precise description of the relative positioning of objects in space.
Satellite Tracking: Basics and Applications
Covers the basics of satellite tracking, GPS systems, geolocation, and challenges in GNSS applications.
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