Robohub.org
 

Distributed Autonomous Robotic Systems (DARS 2012)


by
16 December 2012



share this:

My colleague Nils Napp from Radhika Nagpal‘s lab at Harvard attended the DARS symposium this year and agreed to share some highlights with us.

This time around, the biannual Symposium on Distributed Autonomous Robotic Systems (DARS) was at Johns Hopkins University in Baltimore Maryland. The single track featured a great lineup of invited and technical talks. For example, Prof. Gracias gave a fascinating keynote talk about his group’s work in self-folding microstructures and progress toward making swarms of untethered micro-robots. They designed tiny metal grippers that can perform biopsies in difficult-to-reach areas and be retrieved in bulk via a magnet.

A striking aspect of the diverse (and generally fantastic) technical program was that the exotic Brazil-nut effect kept surfacing. With random agitation granular mixtures of different sized particles spontaneously separate, even against gravity! Larger particles usually end up on top: a fact that can readily be exploited for picking out large brazil-nuts from a mixture that includes less desirable varieties. Applied to robots, this effect can be used to design shockingly simple motion strategies to transport relatively large objects or sort robots.

K. Sugawara, D. Reishus, N. Correll (2012): Object Transportation by Granular Convection Using Swarm Robots. (download paper)

Gauci M., Chen J., Dodd T.J., and Groß R. Evolving Aggregation Behaviors in Multi-Robot Systems with Binary Sensors. (download paper)

As a special treat during the poster session, students from Sarah Bergbreiter’s group at the University of Maryland demoed some really neat, really small, and (comparatively) really fast mini-robots called TinyTeRPs.

Also, mark your calendars for 2014 when DARS will be in Korea!

More on the author: Nils Napp works on distributed robotic construction using iterative amorphous depositions. You might have seen his foam-depositing robot on the Automaton Blog or Robohub. At DARS he presented a paper to reliably build ramps in unstructured environments. The idea is to exploit the low-level mechanical feedback of compliant building materials to make construction more robust. As a result, relatively simple local strategies for interacting with irregularly shaped, partially built structures can give rise to robust, adaptive global properties.



tags: ,


Sabine Hauert is President of Robohub and Associate Professor at the Bristol Robotics Laboratory
Sabine Hauert is President of Robohub and Associate Professor at the Bristol Robotics Laboratory

            AUAI is supported by:



Subscribe to Robohub newsletter on substack



Related posts :

First 11 vs 11 humanoid soccer game played at RoboCup 2026

  28 Aug 2026
Watch highlights from this historic match.

How green is your robot? And other awkward questions

Robots clean rivers and sort waste, monitor ecosystems, and inspect renewable-energy infrastructure. But even the greenest robot has an environmental footprint.

These tiny drones are powered by sound

  24 Aug 2026
EPFL engineers have designed acoustic cavities that convert sound waves into thrust, propelling small robots and ultralight aerial vehicles without on-board actuators or electronics.

#AAMAS2026 blue sky award winner: Foundation world models for agents in changing environments

and   21 Aug 2026
Hear from the AAMAS 2026 Best Blue Sky Paper Award winner.

Robotics roadmaps from around the world spotlight of the month: Japan

Robots have been a prolific theme in Japanese pop culture and media since the 1950s

Intermittent swimming promotes the energy efficiency of fish-like robot movements

How zebrafish-inspired robots save energy by swimming in bursts.

What does it take for a robot to hold a conversation with a room, not just a person?

and   14 Aug 2026
Find out about a summer school held at Imperial College London.

Robotics roadmaps from around the world

We embark on a tour into some of the recent and prominent robotics roadmaps from around the world.



AUAI is supported by:







Subscribe to Robohub newsletter on substack




 















©2026.05 - Association for the Understanding of Artificial Intelligence