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Robotics courses

Learn Robotics online: university courses, full YouTube courses, and courses with free certificates, from the IITs, MIT, Harvard, Google, Microsoft and more.

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Showing 183 courses

Columbia University

Artificial Intelligence (AI)

Learn the fundamentals of Artificial Intelligence (AI), and apply them. Design intelligent agents to solve real-world problems including, search, games, machine learning, logic, and constraint satisfaction problems.

  • edX
  • Fixed dates
  • Free to audit
  • Paid certificate
  • Advanced

MIT OpenCourseWare

Underactuated Robotics

Robots today move far too conservatively, using control systems that attempt to maintain full control authority at all times. Humans and animals move much more aggressively by routinely executing motions which involve a loss of instantaneous control authority. Controlling nonlinear systems without…

  • MIT
  • Self-paced
  • Free course
  • Advanced

Stanford University

Robotics

Discover the captivating world of Robotics with this curated YouTube playlist. This collection features expert insights, educational content from reputable organizations, and engaging discussions that highlight the latest developments in the field.

Video playlist
  • YouTube
  • 58 videos, 58 hours
  • Self-paced
  • Free video

Massachusetts Institute of Technology

MIT 6.832 Underactuated Robotics, Spring 2009

Instructor: Russell Tedrake See the complete course at: http://ocw.mit.edu/6-832s09 Robots today move far too conservatively, using control systems that attempt to maintain full control authority at all times. Humans and animals move much more aggressively by routinely executing motions which invol…

Video playlist
  • YouTube
  • 23 videos, 28 hours
  • Self-paced
  • Free video

MIT OpenCourseWare

Cognitive Robotics

This is a class about applying autonomy to real-world systems. The overarching theme uniting the many different topics in this course will center around programming a cognitive robotic. This class takes the approach of introducing new reasoning techniques and ideas incrementally. We start with the…

  • MIT
  • Self-paced
  • Free course
  • Advanced

MIT OpenCourseWare

Visual Navigation for Autonomous Vehicles (VNAV)

This course covers the mathematical foundations and state-of-the-art implementations of algorithms for vision-based navigation of autonomous vehicles (e.g., mobile robots, self-driving cars, drones). It provides students with a rigorous but pragmatic overview of differential geometry and optimizati…

  • MIT
  • Self-paced
  • Free course
  • Advanced

Columbia University

Robotics

Learn the core techniques for representing robots that perform physical tasks in the real world.

  • edX
  • Fixed dates
  • Free to audit
  • Paid certificate
  • Advanced

Massachusetts Institute of Technology

MIT 16.412J Cognitive Robotics, Spring 2016

MIT 16.412J Cognitive Robotics, Spring 2016 View the complete course: https://ocw.mit.edu/16-412JS16 Instructor: MIT students This is an advanced lecture series from MIT 16.412 Cognitive Robotics of Spring 2016, led by MIT students. License: Creative Commons BY-NC-SA More information at https://ocw…

Video playlist
  • YouTube
  • 7 videos, 8 hours
  • Self-paced
  • Free video

Stanford University

Stanford AA289/ENGR319 - Robotics and Autonomous Systems Seminar

The Stanford Robotics and Autonomous Systems Seminar hosts both guest and internal speakers to a weekly seminar series. The aim is to bring the robotics community together and provide a platform to overview and foster discussion about the progress and challenges in the various disciplines of modern…

Video playlist
  • YouTube
  • 121 videos, 104 hours
  • Self-paced
  • Free video

MIT OpenCourseWare

Autonomous Robot Design Competition

6.270 is a hands-on, learn-by-doing class, in which participants design and build a robot that will play in a competition at the end of January. The goal for the students is to design a machine that will be able to navigate its way around the playing surface, recognize other opponents, and manipula…

  • MIT
  • Self-paced
  • Free course
  • Advanced

University of Pennsylvania

Robotics: Vision Intelligence and Machine Learning

Learn how to design robot vision systems that avoid collisions, safely work with humans and understand their environment.

  • edX
  • Self-paced
  • Free to audit
  • Paid certificate
  • Advanced

University of Pennsylvania

Robotics: Dynamics and Control

Learn how to design and engineer complex, dynamic robotic systems.

  • edX
  • Self-paced
  • Free to audit
  • Paid certificate
  • Advanced

ETH Zurich

Autonomous Mobile Robots

4.514 ratings

Basic concepts and algorithms for locomotion, perception, and intelligent navigation.

  • edX
  • Self-paced
  • Free to audit
  • Paid certificate
  • Intermediate

University of Pennsylvania

Robotics: Locomotion Engineering

Learn how to design, build, and program dynamical, legged robots that can operate in the real world.

  • edX
  • Self-paced
  • Free to audit
  • Paid certificate
  • Advanced

MIT OpenCourseWare

Foundation Models and Generative AI

ChatGPT, Copilot, CLIP, Dall-E, Stable-Diffusion, AlphaFold, self-driving cars—is now the time that artificial intelligence (AI) lives up to all its hype? What’s the secret sauce behind these recent breakthroughs within AI? They’re called foundation models and generative AI, and it is changing ever…

  • MIT
  • Self-paced
  • Free course
  • Advanced

IIT Madras

Introduction to robotics

Engineering Design course by Dr. Balaraman Ravindran, Dr. Krishna Vasudevan, Dr. T Asokan.

  • NPTEL
  • 43 lectures
  • Self-paced
  • Free course
  • Paid certificate

Stanford University

Stanford EE259: Principles of Sensing for Autonomy I Spring 2023

EE259 is a new class, taught for the first time in Spring quarter 2022–23. Sensing is at the core of any autonomous robotics application, and EE259 covers the fundamental principles of design and operation of sensors that enable autonomy in robotic systems such as autonomous vehicles. We start from…

Video playlist
  • YouTube
  • 21 videos, 29 hours
  • Self-paced
  • Free video