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Visual Odometry for Robotics

Éditeur Independently Published
Pages 184 pages
ISBN 9798190652789
Langue anglais

Description en anglais

How does a robot know where it is, how far it has moved, and which direction it should travel when GPS is unavailable? The answer is visual odometry - a powerful computer vision technique that allows robots to estimate motion by analyzing images captured from cameras.Visual Odometry for Robotics introduces the principles and practical applications of camera-based motion estimation for autonomous robots. This book explains how robots use live video feeds to detect visual features, calculate movement, estimate position, and build awareness of their surroundings.Inside this book, you will learn:The fundamentals of visual odometry and its role in autonomous roboticsHow robots estimate movement using cameras and image sequencesFeature detection, feature matching, and motion tracking techniquesThe mathematics behind camera motion estimation and 3D reconstructionDifferences between monocular, stereo, and RGB-D visual odometry systemsHow optical flow helps robots understand movement from video dataIntegration of visual odometry with SLAM and autonomous navigation systemsCamera calibration and methods for improving tracking accuracyReal-world challenges including lighting changes, motion blur, and dynamic environmentsPractical applications in drones, mobile robots, autonomous vehicles, and robotic explorationWhether you are a robotics student, computer vision developer, AI enthusiast, or engineer building autonomous systems, this book provides a clear introduction to one of the most important technologies behind modern robot navigation.From warehouse robots and self-driving vehicles to drones and planetary exploration robots, visual odometry enables machines to understand their movement through the world without relying only on external positioning systems.Discover how robots transform camera images into motion intelligence and learn the technologies that allow autonomous machines to navigate, explore, and operate in complex environments.

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