Jian Chen, Bingxi Jia, Kaixiang Zhang
Multi-View Geometry Based Visual Perception and Control of Robotic Systems (eBook, PDF)
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Jian Chen, Bingxi Jia, Kaixiang Zhang
Multi-View Geometry Based Visual Perception and Control of Robotic Systems (eBook, PDF)
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This book describes visual perception and control methods for robotic systems that need to interact with the environment.
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This book describes visual perception and control methods for robotic systems that need to interact with the environment.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis
- Seitenzahl: 360
- Erscheinungstermin: 14. Juni 2018
- Englisch
- ISBN-13: 9780429951237
- Artikelnr.: 54263928
- Verlag: Taylor & Francis
- Seitenzahl: 360
- Erscheinungstermin: 14. Juni 2018
- Englisch
- ISBN-13: 9780429951237
- Artikelnr.: 54263928
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Jian Chen in 2013 joined the Department of Control Science and Engineering, Zhejiang University, where he is currently a Professor with the College of Control Science and Engineering. He has been supported by the Chinese Recruitment Program of Global Youth Experts since 2013, and the Key Program of National Natural Science Foundation of China on Modeling and Control of Fuel Cell vehicles since 2015.
1. Foundations: Robotics. 2. Multiple View Geometry. 3. Visual Perception
of Robotics: Introduction to Visual Perception. 4. Two-view Geometry-based
Road Scene Reconstruction. 5. Recursive Road Detection with Shadows. 6.
Range Identification of Moving Objects Using a Single Camera. 7. Velocity
and Range Identification of Moving Objects Using a Static-moving Camera
System. 8. Visual Control of Robotics: Introduction to Visual Control. 9.
Homography-based Visual Servo Tracking for a Fixed Camera Configuration
with a Camera-in-hand Extension. 10. Navigation Function-based Visual
Control with Field-of-view Constraints. 11. Robust Control for Moving
Object Tracking with Trajectory Tracking Extension. 12. Trifocal
Tensor-based Unified Tracking and Regulation of Wheeled Mobile Robots. 13.
Homography-based Unified Tracking and Regulation of Wheeled Mobile Robots
with Euclidean Reconstruction. 14. Conclusion and Future Research
Directions.
of Robotics: Introduction to Visual Perception. 4. Two-view Geometry-based
Road Scene Reconstruction. 5. Recursive Road Detection with Shadows. 6.
Range Identification of Moving Objects Using a Single Camera. 7. Velocity
and Range Identification of Moving Objects Using a Static-moving Camera
System. 8. Visual Control of Robotics: Introduction to Visual Control. 9.
Homography-based Visual Servo Tracking for a Fixed Camera Configuration
with a Camera-in-hand Extension. 10. Navigation Function-based Visual
Control with Field-of-view Constraints. 11. Robust Control for Moving
Object Tracking with Trajectory Tracking Extension. 12. Trifocal
Tensor-based Unified Tracking and Regulation of Wheeled Mobile Robots. 13.
Homography-based Unified Tracking and Regulation of Wheeled Mobile Robots
with Euclidean Reconstruction. 14. Conclusion and Future Research
Directions.
1. Foundations: Robotics. 2. Multiple View Geometry. 3. Visual Perception
of Robotics: Introduction to Visual Perception. 4. Two-view Geometry-based
Road Scene Reconstruction. 5. Recursive Road Detection with Shadows. 6.
Range Identification of Moving Objects Using a Single Camera. 7. Velocity
and Range Identification of Moving Objects Using a Static-moving Camera
System. 8. Visual Control of Robotics: Introduction to Visual Control. 9.
Homography-based Visual Servo Tracking for a Fixed Camera Configuration
with a Camera-in-hand Extension. 10. Navigation Function-based Visual
Control with Field-of-view Constraints. 11. Robust Control for Moving
Object Tracking with Trajectory Tracking Extension. 12. Trifocal
Tensor-based Unified Tracking and Regulation of Wheeled Mobile Robots. 13.
Homography-based Unified Tracking and Regulation of Wheeled Mobile Robots
with Euclidean Reconstruction. 14. Conclusion and Future Research
Directions.
of Robotics: Introduction to Visual Perception. 4. Two-view Geometry-based
Road Scene Reconstruction. 5. Recursive Road Detection with Shadows. 6.
Range Identification of Moving Objects Using a Single Camera. 7. Velocity
and Range Identification of Moving Objects Using a Static-moving Camera
System. 8. Visual Control of Robotics: Introduction to Visual Control. 9.
Homography-based Visual Servo Tracking for a Fixed Camera Configuration
with a Camera-in-hand Extension. 10. Navigation Function-based Visual
Control with Field-of-view Constraints. 11. Robust Control for Moving
Object Tracking with Trajectory Tracking Extension. 12. Trifocal
Tensor-based Unified Tracking and Regulation of Wheeled Mobile Robots. 13.
Homography-based Unified Tracking and Regulation of Wheeled Mobile Robots
with Euclidean Reconstruction. 14. Conclusion and Future Research
Directions.