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A Virtual Mechanical Interaction Layer Enables Resilient Human-to-Robot Object Handovers

About

Object handover is a common form of interaction that is widely present in collaborative tasks. However, achieving it efficiently remains a challenge. We address the problem of ensuring resilient robotic actions that can adapt to complex changes in object pose during human-to-robot object handovers. We propose the use of Virtual Model Control to create an interaction layer that controls the robot and adapts to the dynamic changes in the handover process. Additionally, we propose the use of augmented reality to facilitate bidirectional communication between humans and robots during handovers. We assess the performance of our controller in a set of experiments that demonstrate its resilience to various sources of uncertainties, including complex changes to the object's pose during the handover. Finally, we performed a user study with 16 participants to understand human preferences for different robot control profiles and augmented reality visuals in object handovers. Our results showed a general preference for the proposed approach and revealed insights that can guide further development in adapting the interaction with the user.

Omar Faris, S{\l}awomir Tadeja, Fulvio Forni• 2025

Related benchmarks

TaskDatasetResultRank
Object HandoverCardboard Box Rotation Experiment I
TA3.38
4
Object HandoverBanana Experiment I Rotation
TA3.14
4
Object HandoverExperiment I Cup Mug Rotation
TA3.8
2
Object HandoverExperiment I Cardboard Box Translation
Task Achievement4.79
2
Object HandoverBanana Translation Experiment I
Task Achievement (ta)4.14
2
Object HandoverExperiment I Spoon Rotation
TA3.64
2
Object HandoverExperiment I Spoon Translation
Task Achievement (TA)4.3
2
Object HandoverExperiment I Cup/Mug Translation
Task Achievement4.76
2
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