HomeElectronics NewsNew Robot Learns Physical Skills From Brief Demonstrations

New Robot Learns Physical Skills From Brief Demonstrations

A new robot model learns physical tasks from seconds-long demonstrations, achieving high success rates without extensive task-specific training, optimisation or repeated human instruction over time.

GEN-1.5 learns physical tasks from seconds-long demonstrations.
GEN-1.5 learns physical tasks from seconds-long demonstrations.

Generalist AI has developed GEN-1.5, a robot model designed to learn physical tasks from demonstrations lasting just three to 12 seconds. The approach could reduce the data and training time required to teach robots practical skills.

- Advertisement -

GEN-1.5 combines information from sensors, language and proprioceptive data to interpret demonstrations and generate action trajectories in real time. Rather than relying on extensive task-specific datasets and repeated optimisation, the system treats a demonstration as a physical prompt.

Tests across 10 physical tasks produced an average success rate of 94% when the robot received one demonstration. With five minutes of task-specific data and no gradient steps, its average success rate increased to 98%.

The demonstrations were deliberately simple and short. Tasks included twisting the lid off a glass jar, retrieving money from a purse, stacking cups, opening a book, emptying a pencil pouch and removing a vacuum pen.

- Advertisement -

The demonstration can come from a person using handheld grippers or from the robot itself performing the task. Once an example is provided, the model attempts to reproduce the behaviour without a conventional training phase.

GEN-1.5 can also combine separate physical prompts. In one demonstration, it received individual examples of emptying a pencil pouch and retrieving money, then connected the behaviours into a sequence. It generated intermediate repositioning and recovery movements that were not present in either demonstration.

The model also showed signs of generalisation beyond the exact actions demonstrated. A simulated demonstration could be used to prompt a real robot, while learned behaviour could adapt to different hands, objects and positions.

The work points towards a more flexible approach to robot learning, where brief demonstrations can provide enough information for machines to perform unfamiliar physical tasks without lengthy training processes.

Loading form…
T Pavani
T Pavani
T Pavani is a Tech Journalist at ElectronicsForU.com with a deep interest in embedded systems, IoT, robotics, AI/ML, VLSI, and emerging technologies.

SHARE YOUR THOUGHTS & COMMENTS

EFY Prime

Unique DIY Projects

Electronics News

Truly Innovative Electronics

Latest DIY Videos

Electronics Components

Electronics Jobs

Calculators For Electronics