Coaching Computer Canines in Clambering

The mutts are metal, the size of toy poodles, with four pointy feet ending in little balls. They need to learn how to make their way on those little feet across a treacherous terrain of broken rocks. University of Southern California roboticist Stefan Schaal has just won renewal of a $1.5 million DARPA contract to train them to do so.

Schaal, an associate professor in the USC Viterbi School of Engineering department of computer science, began working on the problem more than a year ago.

Four- and six-legged robots have been walking around for years, he noted — but most just on smooth surfaces where wheels are a more efficient of getting around.

“What you really want legged robots for is to negotiate difficult terrain,” he says. ” This project is designed to push that envelop.”

Boston Dynamics builds the 'bots, which come with an onboard computer chip connected to sensors.

The robot is continually aware of the location of its center of gravity.The strategy for walking, as explained in a paper Schaal presented at the 2007 IEEE International Conference on Robotics and Automation, was “to adjust a smooth walking pattern generator with the selection of every foot placement such that the center of gravity … follows a stable trajectory.”

To do this, the robot calculates where and how it should proceed, “based on the current position, velocity, and acceleration” of its legs. If one effort fails, the dog learns from its mistakes and tries another route the next time.

After 15 months of experimentation — sending back mechanical dog bodies at a rate of about one per month, but saving each one’s digital electronic experience — Schaal's dogs can now move, but not very fast: traveling at 1.6 centimeters a second, a little faster than the old 1.2 cm/sec of the old Mars Sojourner robot.

The goal in the next phase of the study is to triple the speed and double the difficulty of the terrain – have the dogs not just traverse rocky ground, but climb rocky ground with a sharp slope.

If that can be achieved, he says, the programming will move over into bigger mechanical dogs.

Schaal is competing with five other labs at universities and R&D centers around the country. For the first part of the study, Schaal’s former graduate student Dimitris Pongas (CS Ph.D. 07) made significant contributions.

What about making them bark? “Once they can run, I’ll bark for them,” Schaal says.

Media Contact

Eric Mankin EurekAlert!

More Information:

http://www.usc.edu

All latest news from the category: Information Technology

Here you can find a summary of innovations in the fields of information and data processing and up-to-date developments on IT equipment and hardware.

This area covers topics such as IT services, IT architectures, IT management and telecommunications.

Back to home

Comments (0)

Write a comment

Newest articles

Recovering phosphorus from sewage sludge ash

Chemical and heat treatment of sewage sludge can recover phosphorus in a process that could help address the problem of diminishing supplies of phosphorus ores. Valuable supplies of phosphorus could…

Efficient, sustainable and cost-effective hybrid energy storage system for modern power grids

EU project HyFlow: Over three years of research, the consortium of the EU project HyFlow has successfully developed a highly efficient, sustainable, and cost-effective hybrid energy storage system (HESS) that…

After 25 years, researchers uncover genetic cause of rare neurological disease

Some families call it a trial of faith. Others just call it a curse. The progressive neurological disease known as spinocerebellar ataxia 4 (SCA4) is a rare condition, but its…

Partners & Sponsors