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Mastering ROS for Robotics Programming

You're reading from   Mastering ROS for Robotics Programming Design, build, and simulate complex robots using the Robot Operating System

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Product type Paperback
Published in Dec 2015
Publisher Packt
ISBN-13 9781783551798
Length 480 pages
Edition 1st Edition
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Concepts
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Author (1):
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Lentin Joseph Lentin Joseph
Author Profile Icon Lentin Joseph
Lentin Joseph
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Toc

Table of Contents (14) Chapters Close

Preface 1. Introduction to ROS and Its Package Management FREE CHAPTER 2. Working with 3D Robot Modeling in ROS 3. Simulating Robots Using ROS and Gazebo 4. Using the ROS MoveIt! and Navigation Stack 5. Working with Pluginlib, Nodelets, and Gazebo Plugins 6. Writing ROS Controllers and Visualization Plugins 7. Interfacing I/O Boards, Sensors, and Actuators to ROS 8. Programming Vision Sensors using ROS, Open-CV, and PCL 9. Building and Interfacing Differential Drive Mobile Robot Hardware in ROS 10. Exploring the Advanced Capabilities of ROS-MoveIt! 11. ROS for Industrial Robots 12. Troubleshooting and Best Practices in ROS Index

Summary


In this chapter, we explored some advanced features of MoveIt! and how we can interface it into a real hardware. The chapter started with a discussion on collision checking using MoveIt!. We saw how to add a collision object using MoveIt! APIs and also saw the direct importing of mesh to the planning scene. We discussed a ROS node to check collision using MoveIt! APIs. After learning about collisions, we moved to perception using MoveIt!. We connected the simulated point cloud data to MoveIt! and created an OctoMap in MoveIt!. The next topic we discussed was grasping, using the moveit_simple_grasp package. We saw the grasp generator using this package and we made a simple pick and place task using the grasp server and the pick and place node. After discussing these things, we switched to hardware interfacing of MoveIt! using dynamixel servos and its ROS controllers. In the end, we saw a real robotic arm called COOL arm and its interfacing to MoveIt!, which was completely built using...

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