AI Article Synopsis

  • Autonomous robots with wheels and legs can improve how goods are delivered in cities and make things work better overall.
  • They face challenges like moving over different types of ground and avoiding obstacles, so they need smart ways to walk and drive.
  • A new system was created that helps these robots move smoothly and quickly using advanced learning techniques, and it was tested successfully in cities like Zurich and Seville.

Article Abstract

Autonomous wheeled-legged robots have the potential to transform logistics systems, improving operational efficiency and adaptability in urban environments. Navigating urban environments, however, poses unique challenges for robots, necessitating innovative solutions for locomotion and navigation. These challenges include the need for adaptive locomotion across varied terrains and the ability to navigate efficiently around complex dynamic obstacles. This work introduces a fully integrated system comprising adaptive locomotion control, mobility-aware local navigation planning, and large-scale path planning within the city. Using model-free reinforcement learning (RL) techniques and privileged learning, we developed a versatile locomotion controller. This controller achieves efficient and robust locomotion over various rough terrains, facilitated by smooth transitions between walking and driving modes. It is tightly integrated with a learned navigation controller through a hierarchical RL framework, enabling effective navigation through challenging terrain and various obstacles at high speed. Our controllers are integrated into a large-scale urban navigation system and validated by autonomous, kilometer-scale navigation missions conducted in Zurich, Switzerland, and Seville, Spain. These missions demonstrate the system's robustness and adaptability, underscoring the importance of integrated control systems in achieving seamless navigation in complex environments. Our findings support the feasibility of wheeled-legged robots and hierarchical RL for autonomous navigation, with implications for last-mile delivery and beyond.

Download full-text PDF

Source
http://dx.doi.org/10.1126/scirobotics.adi9641DOI Listing

Publication Analysis

Top Keywords

wheeled-legged robots
12
navigation
9
autonomous navigation
8
urban environments
8
adaptive locomotion
8
locomotion
6
learning robust
4
autonomous
4
robust autonomous
4
navigation locomotion
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!