2019
DOI: 10.48550/arxiv.1909.07205
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Knee Compliance Reduces Peak Swing Phase Collision Forces in a Lower-Limb Exoskeleton Leg: A Test Bench Evaluation

Abstract: Powered lower limb exoskeletons are a viable solution for people with a spinal cord injury to regain mobility for their daily activities. However, the commonly employed rigid actuation and pre-programmed trajectories increase the risk of falling in case of collisions with external objects. Compliant actuation may reduce forces during collisions, thus protecting hardware and user. However, experimental data of collisions specific to lower limb exoskeletons are not available. In this work, we investigated how a … Show more

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“…To switch between the two configurations, a bolt is added to or removed from the system (Fig. 1) [17].…”
Section: The Varileg Exoskeletonmentioning
confidence: 99%
“…To switch between the two configurations, a bolt is added to or removed from the system (Fig. 1) [17].…”
Section: The Varileg Exoskeletonmentioning
confidence: 99%