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Mastering ROS for Robotics Programming, Third edition - Third Edition

You're reading from  Mastering ROS for Robotics Programming, Third edition - Third Edition

Product type Book
Published in Oct 2021
Publisher Packt
ISBN-13 9781801071024
Pages 594 pages
Edition 3rd Edition
Languages
Concepts
Authors (2):
Lentin Joseph Lentin Joseph
Profile icon Lentin Joseph
Jonathan Cacace Jonathan Cacace
Profile icon Jonathan Cacace
View More author details

Table of Contents (22) Chapters

Preface 1. Section 1 – ROS Programming Essentials
2. Chapter 1: Introduction to ROS 3. Chapter 2: Getting Started with ROS Programming 4. Section 2 – ROS Robot Simulation
5. Chapter 3: Working with ROS for 3D Modeling 6. Chapter 4: Simulating Robots Using ROS and Gazebo 7. Chapter 5: Simulating Robots Using ROS, CoppeliaSim, and Webots 8. Chapter 6: Using the ROS MoveIt! and Navigation Stack 9. Chapter 7: Exploring the Advanced Capabilities of ROS MoveIt! 10. Chapter 8: ROS for Aerial Robots 11. Section 3 – ROS Robot Hardware Prototyping
12. Chapter 9: Interfacing I/O Board Sensors and Actuators to ROS 13. Chapter 10: Programming Vision Sensors Using ROS, OpenCV, and PCL 14. Chapter 11: Building and Interfacing Differential Drive Mobile Robot Hardware in ROS 15. Section 4 – Advanced ROS Programming
16. Chapter 12: Working with pluginlib, nodelets, and Gazebo Plugins 17. Chapter 13: Writing ROS Controllers and Visualization Plugins 18. Chapter 14: Using ROS in MATLAB and Simulink 19. Chapter 15: ROS for Industrial Robots 20. Chapter 16: Troubleshooting and Best Practices in ROS 21. Other Books You May Enjoy

Working with ROS camera calibration

Like all sensors, cameras also need to be calibrated so that we can correct the distortions in the camera's images due to its internal parameters, as well as for finding the world coordinates from the camera coordinates.

The primary parameters that cause image distortions are radial distortions and tangential distortions. Using the camera calibration algorithm, we can model these parameters and also calculate the real-world coordinates from the camera coordinates by computing the camera calibration matrix, which contains the focal distance and the principal points.

Camera calibration can be done using a classic black-white chessboard, symmetrical circle pattern, or asymmetrical circle pattern. According to each pattern, we can use different equations to get the calibration parameters. Using certain calibration tools, we can detect these patterns, and each detected pattern is taken as a new equation. When the calibration tool detects enough...

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