Position, Navigation, and Timing Technologies in the 21st Century. Группа авторов
Читать онлайн книгу.51 Digital Photogrammetry 51.1 Introduction 51.2 Optical Imagery 51.3 Basic Definitions 51.4 Fundamentals of Photogrammetry 51.5 Photogrammetric Processing Workflow 51.6 Applications 51.7 Conclusion References 52 Navigation Using Pulsars and Other Variable Celestial Sources 52.1 Navigation Concepts and Benefits 52.2 Variable Celestial Sources 52.3 Applications for Spacecraft and Planetary Vehicles 52.4 Current Technology Limitations and Future Developments Acknowledgments References 53 Neuroscience of Navigation 53.1 Introduction 53.2 Spatial Foundations 53.3 Specialized Spatial Cells 53.4 Neural Systems and Navigation 53.5 Future Directions 53.6 Conclusion References 54 Orientation and Navigation in the Animal World 54.1 What Information Do Animals Use to Orientate and Navigate? 54.2 Star Compass 54.3 Radical‐Pair‐Based Magnetoreceptor 54.4 Conclusions and Perspectives References
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Part F: Position, Navigation, and Timing for Consumer and Commercial Applications
55 GNSS Applications in Surveying and Mobile Mapping
55.1 Introduction
55.2 Surveying and Mobile Mapping Sector’s Positioning Requirements
55.3 GNSS Applications in Land and Marine Surveying
55.4 GNSS for Mobile Mapping
55.5 Emerging Developments in GNSS Systems and Mapping Industry
References
56 Precision Agriculture
56.1 Precision Agriculture
56.2 GNSS Requirements for Agriculture
56.3 Conclusion
57 Wearables
57.1 Introduction
57.2 Origins of Wearables
57.3 The World of Wearables
57.4 Wearable Device Architecture
57.5 Sensors and Measurement
57.6 Power Management/Battery Monitoring
57.7 Screens
57.8 Video and Audio
57.9 Wireless Technology
57.10 Privacy and Security
57.11 The Future
57.12 Summary
58 Navigation in Advanced Driver Assistance Systems and Automated Driving
58.1 Introduction
58.2 Useful GNSS Measurements for Vehicle Automation
58.3 Vehicle Modeling
58.4 Applications
References
59 Train Control and Rail Traffic Management Systems
59.1 The Role of GNSS in Modern Train Control Systems
59.2 Track‐Constrained PNT
59.3 GNSS and Odometer Fusion
59.4 Track‐Constrained Relative PVT Estimate
59.5 Multiple‐Track Discrimination
59.6 Track Detector Performance
References
60 Commercial Unmanned Aircraft Systems (UAS)
60.1 UAS Context
60.2 Flight Guidance and Autonomy
60.3 Obstacle Avoidance: Environment
60.4 Obstacle Avoidance: Other Aerial Vehicles
60.5 Role of Navigation
References
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