Build Autonomous Navigation Robot: ROS Simulation & Hardware

Learn how to make a low cost autonomous delivery robot at home from scratch on your own using Robot Operating System!
3.54 (100 reviews)
Udemy
platform
English
language
Hardware
category
Build Autonomous Navigation Robot: ROS Simulation & Hardware
666
students
1 hour
content
Mar 2024
last update
$39.99
regular price

Why take this course?

🤖 Build Autonomous Navigation Robot: ROS Simulation & Hardware 🚀

Headline: Learn how to make a low-cost autonomous delivery robot at home from scratch on your own using Robot Operating System!


Course Overview:

Welcome to the ultimate guide for building an autonomous navigation robot! This course is designed for enthusiasts and hobbyists who want to dive into the world of robotics without breaking the bank. Whether you're a student, a tech aficionado, or just someone with a passion for DIY projects, this course will take you through the process of creating your very own ROS-powered robot from scratch.

What You Will Learn:

🔧 Mechanical Design & Electronic Circuit Assembly: Get hands-on experience in designing and assembling the mechanical structure and electronic circuits that form the backbone of your autonomous robot.

📚 Software Configuration & ROS Navigation Stack Integration: Dive into the software side of things with detailed instructions on configuring your robot's software, including the integration of the ROS navigation stack.

🧱 Arduino Integration: Learn how to seamlessly integrate Arduino components to control motors and sensors, enhancing your robot's functionality.

🖥️ Software Simulation: Master the art of simulating your robot in a virtual environment before taking it into the real world.

🌏 Real-World Navigation & Delivery Application: Transition from simulation to reality, as you program your robot to navigate around your home and perform delivery tasks autonomously.

By the End of This Course, You Will Be Able To:

Design and build a customized physical robot with autonomous navigation capabilities.

Create a detailed map of your home environment using the onboard LIDAR scanner.

Command the robot to go to any location on the created map from a mobile app, joystick, keyboard, push-button, or remote computer interface.

Monitor and understand robot updates through LCD screens, mobile apps, sound alerts, and status LEDs.

Automate the delivery of small payloads and ensure the robot returns to its home base safely.

Course Requirements:

  • Basic knowledge of Python programming language.
  • Familiarity with ROS basics.
  • A grasp of Arduino fundamentals.
  • Slight understanding of 3D printing processes.

Who Is This Course For?

This course is tailored for:

  • Individuals interested in the field of robotics and autonomous systems.
  • Those who wish to explore the capabilities of ROS (Robot Operating System).
  • Anyone looking to build a low-cost, high-functionality robot platform from home.

Let's Embark on This Exciting Journey! 🛠️➡️🚀

Join us now and turn your curiosity into creativity, building an autonomous navigation robot that's not only cost-effective but also a testament to your newfound skills in robotics and programming. Enroll in this course and start your journey towards becoming a roboticist today! 🤓🏠⚫️🔧

Course Gallery

Build Autonomous Navigation Robot: ROS Simulation & Hardware – Screenshot 1
Screenshot 1Build Autonomous Navigation Robot: ROS Simulation & Hardware
Build Autonomous Navigation Robot: ROS Simulation & Hardware – Screenshot 2
Screenshot 2Build Autonomous Navigation Robot: ROS Simulation & Hardware
Build Autonomous Navigation Robot: ROS Simulation & Hardware – Screenshot 3
Screenshot 3Build Autonomous Navigation Robot: ROS Simulation & Hardware
Build Autonomous Navigation Robot: ROS Simulation & Hardware – Screenshot 4
Screenshot 4Build Autonomous Navigation Robot: ROS Simulation & Hardware

Loading charts...

4291196
udemy ID
10/09/2021
course created date
18/09/2021
course indexed date
Bot
course submited by
Build Autonomous Navigation Robot: ROS Simulation & Hardware - | Comidoc