TL;DR
This paper introduces AVR Gym, a VR platform enabling real human interactions with virtual assistive robots to enhance robot control policies trained in simulation, demonstrating improved performance in real-world tasks.
Contribution
We present AVR Gym, a novel VR environment that helps transfer simulation-trained robot policies to real-world interactions, improving assistive robot performance.
Findings
Revised policies performed significantly better with real people.
Participants found Revised policies more successful at assistance.
VR helped improve simulation-trained policies without risking real users.
Abstract
Versatile robotic caregivers could benefit millions of people worldwide, including older adults and people with disabilities. Recent work has explored how robotic caregivers can learn to interact with people through physics simulations, yet transferring what has been learned to real robots remains challenging. Virtual reality (VR) has the potential to help bridge the gap between simulations and the real world. We present Assistive VR Gym (AVR Gym), which enables real people to interact with virtual assistive robots. We also provide evidence that AVR Gym can help researchers improve the performance of simulation-trained assistive robots with real people. Prior to AVR Gym, we trained robot control policies (Original Policies) solely in simulation for four robotic caregiving tasks (robot-assisted feeding, drinking, itch scratching, and bed bathing) with two simulated robots (PR2 from…
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