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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Wearable Knee Assistive Devices for Kneeling Tasks in Construction
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Wearable Knee Assistive Devices for Kneeling Tasks in Construction

机译:可穿戴膝关节辅助装置,用于跪在施工中

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摘要

Construction workers regularly perform tasks that require kneeling, crawling, and squatting. Working in awkward kneeling postures for prolonged time periods can lead to knee pain, injuries, and osteoarthritis. In this article, we present lightweight, wearable sensing, and knee assistive devices for construction workers during kneeling and squatting tasks. Analysis of kneeling on level and sloped surfaces (0., 10., and 20.) is performed for singleand double-leg kneeling tasks. Measurements from the integrated inertial measurement units are used for real-time gait detection and lower limb pose estimation. Detected gait events and pose estimation are used to control the assistive knee joint torque provided by lightweight exoskeletons with powerful quasi-direct drive actuation. Human subject experiments are conducted to validate the effectiveness of the proposed analysis and control design. The results show reduction in knee extension/flexion muscle activation (up to 39%) during stand-to-kneel and kneel-to-stand tasks. Knee-ground contact forces/pressures are also reduced (up to 15%) under robotic assistance during single-leg kneeling. Increasing assistive knee torque shows redistribution of the subject's weight from the knee in contact with the ground to both supporting feet. The proposed system provides an enabling intervention to potentially reduce musculoskeletal injury risks of construction workers.
机译:建筑工人定期执行需要跪姿,爬行和蹲下的任务。在尴尬的跪姿工作,长时间延长的时间可以导致膝关节疼痛,伤害和骨关节炎。在本文中,我们在跪下和蹲任务期间为建筑工人提供轻量级,可穿戴传感和膝关节辅助设备。对斜面和倾斜表面(0.,10,和20)进行触床的分析是针对单腿双腿跪任务进行的。集成惯性测量单元的测量用于实时步态检测和下肢姿势估计。检测到的步态事件和姿势估计用于控制具有强大的准直接驱动致动的轻质外骨骼提供的辅助膝关节扭矩。进行人类对象实验以验证提出的分析和控制设计的有效性。结果显示膝关节延长/屈曲肌肉激活(高达39%)的降低,跪在核心和跪架上。在单腿跪地期间,膝盖接触力/压力也减少(高达15%)。增加辅助膝盖扭矩显示受试者的重量从膝盖与地面接触到支撑脚的重量。拟议的系统提供了一种能够减少建筑工人的肌肉骨骼伤害风险的能干干预。

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