Course Hive
Search

Welcome

Sign in or create your account

Continue with Google
or
Stanford Seminar - Safety-Critical Control of Dynamic Robots
Play lesson

Stanford AA289/ENGR319 - Robotics and Autonomous Systems Seminar - Stanford Seminar - Safety-Critical Control of Dynamic Robots

5.0 (1)
12 learners

What you'll learn

This course includes

  • 100.5 hours of video
  • Certificate of completion
  • Access on mobile and TV

Summary

Keywords

Full Transcript

Aaron Ames Caltech February 14, 2020 Science fiction has long promised a world of robotic possibilities: from humanoid robots in the home, to wearable robotic devices that restore and augment human capabilities, to swarms of autonomous robotic systems forming the backbone of the cities of the future, to robots enabling exploration of the cosmos. With the goal of ultimately achieving these capabilities on robotic systems, this talk will present a unified nonlinear control framework for realizing dynamic behaviors in an efficient, provably stable (via control Lyapunov functions) and safety-critical fashion (as guaranteed by control barrier functions). The application of these ideas will be demonstrated experimentally on a wide variety of robotic systems, including multi-robot systems with guaranteed safe behavior, bipedal and humanoid robots capable of achieving dynamic walking and running behaviors that display the hallmarks of natural human locomotion, and robotic assistive devices (including prostheses and exoskeletons) aimed at restoring mobility. The ideas presented will be framed in the broader context of seeking autonomy on robotic systems with the goal of getting robots into the real-world. View the full playlist: https://www.youtube.com/playlist?list=PLoROMvodv4rMeercb-kvGLUrOq4HR6BZD

Course Hive

Continue this lesson in the app

Install CourseHive on Android or iOS to keep learning while you move.

Related Courses

FAQs

Course Hive
Download CourseHive
Keep learning anywhere