Top AI Repos — open-source AI, indexed and scored
Top AI Repos tracks AI repositories on GitHub and answers two different questions about each one: is it moving right now, and would you bet a product on it.
Top AI Repos tracks AI repositories on GitHub and answers two different questions about each one: is it moving right now, and would you bet a product on it.
| Date | Stars |
|---|---|
| 2026-07-24 | 351 |
| 2026-07-25 | 351 |
| 2026-07-28 | 352 |
| 2026-07-30 | 352 |
| 2026-08-06 | 352 |
Today
— stars today
This week
— stars this week
This month
— stars this month
Momentum
0.0
growth rate 0.00%/day
# Online Robotics Master `Robotics Online Master` in `21 months`. This is a master resulting from the courses aggregation from mainly 3 universities: - [Bonn University](https://www.uni-bonn.de/en/university) - [TUM](https://www.tum.de/en/) - [MIT](https://www.mit.edu/) The topics approached in this master will be: - 2D and 3D Computer Vision for Autonomous Systems - Path Planning for Autonomous Systems - Optimization Methods For Robotic - Sensors for Robotics - Deep Learning for 2D/3D Computer Vision - 3D Graphics - 3D SLAM |1st Trimester |2nd Trimester|3rd Trimester|4th Trimester| 5th Trimester| 6th Trimester| 7th Trimester| Alternative Semester| | :---: | :---: | :---: |:---: |:---: |:---:|:---:|:---:| | [Modern Cpp for Computer Vision](https://www.ipb.uni-bonn.de/teaching/cpp-2020/) | [Mobile Robotics and Sensing I](https://www.youtube.com/playlist?list=PLgnQpQtFTOGQEn33QDVGJpiZLi-SlL7vA) | [Mobile Robotics and Sensing II](https://www.youtube.com/watch?v=mQvKhmWagB4&list=PLgnQpQtFTOGQh_J16IMwDlji18SWQ2PZ6) | [Vision Algorithms for Mobile Robotics](https://rpg.ifi.uzh.ch/teaching.html)| [Practical Course: Vision-based Navigation](https://cvg.cit.tum.de/teaching/ws2020/visnav_ws2020#lectures)|[3D Scanning and Motion Capture](https://www.cs.cit.tum.de/cg/teaching/winter-term-2122/3d-scanning-motion-capture/) | [Visual Navigation for Autonomous Vehicles](https://vnav.mit.edu/)| [Convex Optimization](https://www.edx.org/course/convex-optimization) | |[Photogrammetry I](https://www.ipb.uni-bonn.de/photo12-2021/) | [Photogrammetry II](https://www.ipb.uni-bonn.de/photo12-2021/)| [Multiview Geometry](https://cvg.cit.tum.de/teaching/ss2019/mvg2019)| [Project](https://cvg.cit.tum.de/teaching/ws2021/visnav_ws2021)| [Deep Learning for Computer Vision](https://web.eecs.umich.edu/~justincj/teaching/eecs498/WI2022/schedule.html) | [Deep Learning for Computer Vision](https://web.eecs.umich.edu/~justincj/teaching/eecs498/WI2022/schedule.html) | [Underactuated Robotics](https://underactuated.csail.mit.edu/index.html)| ## Acknowledgement - [Cyrill Stachniss](https://www.linkedin.com/in/cyrill-stachniss-736233173/) - [Davide Scaramuzza](https://rpg.ifi.uzh.ch/people_scaramuzza.html) - [Daniel Cremers](https://cvg.cit.tum.de/members/cremers) - [Matthias Niessner](https://www.cs.cit.tum.de/cg/people/niessner/) - [Ignacio Vizzo](https://github.com/nachovizzo) - [Luca Carlone](https://lucacarlone.mit.edu/) - [Justin Johnson](https://web.eecs.umich.edu/~justincj/) ## Complementary Resources - [PyTorch Intro](https://learn.microsoft.com/en-us/training/paths/pytorch-fundamentals/) - [Linear Algebra Intro](https://ocw.mit.edu/courses/18-06-linear-algebra-spring-2010/) - [Calculus Intro](https://www.youtube.com/watch?v=f0BxAtprWts)
Excerpt of 2,775 characters
Read on GitHubWould you bet a product on this? Bounded 0–100 and slow moving.
matched fp:e66a9a93ebc50b07, topic:robotics, name:robotics, desc:robotics
matched fp:e66a9a93ebc50b07, topic:deep-learning
matched fp:e66a9a93ebc50b07, topic:computer-vision, readme:computer vision