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Practical Arduino Robotics

You're reading from  Practical Arduino Robotics

Product type Book
Published in Mar 2023
Publisher Packt
ISBN-13 9781804613177
Pages 334 pages
Edition 1st Edition
Languages
Concepts
Author (1):
Lukas Kaul Lukas Kaul
Profile icon Lukas Kaul

Table of Contents (21) Chapters

Preface Part 1: Selecting the Right Components for Your Robots
Chapter 1: Introducing Robotics and the Arduino Ecosystem Chapter 2: Making Robots Perceive the World with Sensors Chapter 3: Making Your Robot Move and Interact with the World with Actuators Chapter 4: Selecting the Right Arduino Board for Your Project Part 2: Writing Effective and Reliable Robot Programs for Arduino
Chapter 5: Getting Started with Robot Programming Chapter 6: Understanding Object-Oriented Programming and Creating Arduino Libraries Chapter 7: Testing and Debugging with the Arduino IDE Part 3: Building the Hardware, Electronics, and UI of Your Robot
Chapter 8: Exploring Mechanical Design and the 3D Printing Toolchain Chapter 9: Designing the Power System of Your Robot Chapter 10: Working with Displays, LEDs, and Sound Chapter 11: Adding Wireless Interfaces to Your Robot Part 4: Advanced Example Projects to Put Your Robotic Skills into Action
Chapter 12: Building an Advanced Line-Following Robot Using a Camera Chapter 13: Building a Self-Balancing, Radio-Controlled Telepresence Robot Chapter 14: Wrapping Up, Next Steps, and a Look Ahead Index Other Books You May Enjoy

Line following – the “Hello, World!” of robotics

Building a mobile robot that can follow a dark line on a bright background is a great project to put much of our learning to use, without being overly complicated. By the end of this chapter, you will have a robot that can autonomously follow a line, completely on its own. You will see feedback control, DC motor control, and Bluetooth communication in action, all in one project. Even though this robot is not complicated, and we will only demonstrate a very basic line-following algorithm, it gives you a great platform to experiment with many more ideas. You can improve the line-following algorithm to make it go as fast as possible or you can add additional sensors to give your robot more capabilities. You can add a camera gimbal so that your robot can use the camera for more than just line following. You can develop a ground station to view live telemetry from your robot, or you can add an RC receiver and add an RC...

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