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Learn Robotics Programming

You're reading from   Learn Robotics Programming Build and control autonomous robots using Raspberry Pi 3 and Python

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Product type Paperback
Published in Nov 2018
Publisher Packt
ISBN-13 9781789340747
Length 472 pages
Edition 1st Edition
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Author (1):
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Danny Staple Danny Staple
Author Profile Icon Danny Staple
Danny Staple
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Table of Contents (21) Chapters Close

Preface 1. Introduction to Robotics 2. Exploring Robot Building Blocks - Code and Electronics FREE CHAPTER 3. Introducing the Raspberry Pi - Starting with Raspbian 4. Preparing a Raspberry Pi for a Robot - Headless by Default 5. Backing Up the Code with Git and SD Card Copies 6. Building Robot Basics - Wheels, Power, and Wiring 7. Drive and Turn - Moving Motors with Python 8. Programming Line-Following Sensors Using Python 9. Programming RGB Strips in Python 10. Using Python to Control Servo Motors 11. Programming Distance Sensors with Python 12. Programming Encoders with Python 13. Robot Vision - Using a Pi Camera and OpenCV 14. Voice Communication with a Robot Using Mycroft 15. Programming a Gamepad on Raspberry Pi with Python 16. Taking Your Robot Programming Skills Further 17. Planning Your Next Robot Project - Putting It All Together 18. Assessments 19. Other Books You May Enjoy Appendix

Programming Encoders with Python

It is useful in robotics to sense the movements of motors and wheels. We've driven a robot along a path, but it's unlikely that it has stayed on course. Detecting this and travelling a specific distance is useful in creating behaviors. In this chapter, we will investigate the sensors that can be used for this and then program the robot to move in a straight line, and for a specific distance. We will then look at how to make a specific turn. Please note that this chapter will contain math.

In this chapter, you will learn about the following topics:

  • Distance and speed measuring sensors—encoders and odometry
  • How to attach the sensors to your robot
  • Creating code to work with these sensors and detect a basic distance (in ticks)
  • Seeing how to correct for veer in a robot and actually drive in a straight line
  • Calibrating the sensors...
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