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Monitoring Contact Behavior During Assisted Walking With a Lower Limb Exoskeleton

机译:监测辅助行走时的联系行为与下肢外骨骼一起行走

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Interaction forces between a robotic cuff and the skin during assisted walking with a lower limb exoskeleton may cause skin injuries over time, such as blisters and ulcers. This study proposes a sensing cuff that can monitor the contact behavior between the exoskeleton and skin during assisted walking, and a functional test and assisted walking experiments were conducted to evaluate the performance of the proposed device. The functional test of the sensing cuff showed good performance of capturing the contact behavior for safety evaluation. The walking experiment involved subjects walking on a treadmill with a lower limb exoskeleton under different conditions (i.e., walking speed and clothing), and the sensing cuff attached to the exoskeleton measured the interaction forces and slip velocity. The magnitude of shear force in the movement direction peaked near the beginning and within 40 - 50% of the gait cycle. The contact safety of the lower limb exoskeleton during assisted walking was then evaluated based on the calculated shear stress. The designed sensing cuff could provide sufficient information regarding contact behavior and contact safety during assisted walking.
机译:机器人袖带和皮肤之间的相互作用力在辅助使用下肢前骨骼进行行走期间可能导致皮肤损伤随着时间的推移,例如水疱和溃疡。本研究提出了一种感应袖带,可以监测辅助行走期间外骨骼和皮肤之间的接触行为,并进行功能测试和辅助行走实验以评估所提出的装置的性能。传感袖带的功能试验表明,捕获安全评估的接触行为的良好性能。步行实验涉及在跑步机上行走的主题,在不同条件下,在不同条件下(即步行速度和衣服),并且附着在外骨骼上的传感袖带测量相互作用力和滑动速度。运动方向上的剪切力的大小达到开始靠近步态循环的40-50%。然后基于计算的剪切应力评估辅助行走期间下肢外骨骼的接触安全性。设计的传感袖口可以提供有关接触行为的足够的信息和辅助行走期间的接触安全。

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