Home /Research /Human-in-the-loop optimization of a multi-joint wearable robot for movement assistance
OTHER

Human-in-the-loop optimization of a multi-joint wearable robot for movement assistance

Florian L. Haufe, Peter Wolf, Robert Riener

Year
2020
Citations
11
Access
Open access

Abstract

Soft, lightweight wearable robots can assist individuals with a lower limb weakness. However, it its challenging to identify control parameters that optimize the robotic assistance for a specific user and task. In this context, “Human-in-the-loop” techniques have been suggested to automate this optimization process. Here, we show that the assistance from the Myosuit, a multi-joint wearable robot, can be optimized using a Covariance-Matrix Adaptation Evolution Strategy. The optimization resulted in a reduction of a participant’s energy expenditure that was nearly twice as large (18 % vs. 9.6 %) than when using hand-selected parameters, thereby motivating future work with patients.

Keywords

Wearable computerComputer scienceContext (archaeology)Human–robot interactionRobotHumanoid robotArtificial intelligenceTask (project management)Process (computing)Engineering

Related papers

Browse all OTHER papers