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An Energetic Approach to Task-Invariant Ankle Exoskeleton Control

Katharine Walters, Gray C. Thomas, Jianping Lin, Robert D. Gregg

发表年份
2023
引用次数
4

摘要

Robotic ankle exoskeletons have been shown to reduce human effort during walking. However, existing ankle exoskeleton control approaches are limited in their ability to apply biomimetic torque across diverse tasks outside of the controlled lab environment. Energy shaping control can provide task-invariant assistance without estimating the user's state, classifying task, or reproducing pre-defined torque trajectories. In previous work, we showed that an optimally task-invariant energy shaping controller implemented on a knee-ankle exoskeleton reduced the effort of certain muscles for a range of tasks. In this paper, we extend this approach to the sensor suite available at the ankle and present its implementation on a commercially-available, bilateral ankle exoskeleton. An experiment with three healthy subjects walking on a circuit and on a treadmill showed that the controller can approximate biomimetic profiles for varying terrains and task transitions without classifying tasks or switching control modes.

关键词

ExoskeletonComputer scienceTask (project management)Invariant (physics)AnkleControl (management)Control theory (sociology)Control engineeringArtificial intelligenceSimulation

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