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肘部侧摆式机器人(肘部可穿戴工业人机工程学机器人):一种新型肘部外骨骼的设计、控制与验证

Elbow-sideWINDER (Elbow-side Wearable INDustrial Ergonomic Robot): design, control, and validation of a novel elbow exoskeleton.

作者信息

Park Daegeun, Di Natali Christian, Sposito Matteo, Caldwell Darwin G, Ortiz Jesus

机构信息

Advanced Robotics, Istituto Italiano di Tecnologia, Genoa, Italy.

出版信息

Front Neurorobot. 2023 Jul 12;17:1168213. doi: 10.3389/fnbot.2023.1168213. eCollection 2023.

Abstract

Musculoskeletal Disorders associated with the elbow are one of the most common forms of work-related injuries. Exoskeletons have been proposed as an approach to reduce and ideally eliminate these injuries; however, exoskeletons introduce their own problems, especially discomfort due to joint misalignment. The Elbow-sideWINDER with its associated control strategy is a novel elbow exoskeleton to assist elbow flexion/extension during occupational tasks. This study describes the exoskeleton showing how this can minimize discomfort caused by joint misalignment, maximize assistive performance, and provide increased robustness and reliability in real worksites. The proposed medium-level control strategy can provide effective assistive torque using three control units as follows: an arm kinematics estimator, a load estimator, and a friction compensator. The combined hardware/software system of the Elbow-sideWINDER is tested in load-lifting tasks (2 and 7 ). This experiment focuses on the reduction in the activation level of the biceps brachii and triceps brachii in both arms and the change in the range of motion of the elbow during the task. It is shown that using the Elbow-sideWINDER, the biceps brachii, responsible for the elbow flexion, was significantly less activated (up to 38.8% at 2 and 25.7% at 7 , on average for both arms). For the triceps brachii, the muscle activation was reduced by up to 37.0% at 2 and 35.1% at 7 , on average for both arms. When wearing the exoskeleton, the range of motion of the elbow was reduced by up to 13.0° during the task, but it was within a safe range and could be compensated for by other joints such as the waist or knees. There are extremely encouraging results that provide good indicators and important clues for future improvement of the Elbow-sideWINDER and its control strategy.

摘要

与肘部相关的肌肉骨骼疾病是最常见的与工作相关的损伤形式之一。外骨骼已被提议作为一种减少甚至理想情况下消除这些损伤的方法;然而,外骨骼也带来了自身的问题,尤其是由于关节错位导致的不适。带有相关控制策略的Elbow-sideWINDER是一种新型肘部外骨骼,可在职业任务期间辅助肘部屈伸。本研究描述了这种外骨骼,展示了它如何能将关节错位引起的不适降至最低、最大化辅助性能,并在实际工作场所提高鲁棒性和可靠性。所提出的中级控制策略可使用三个控制单元提供有效的辅助扭矩,如下所示:手臂运动学估计器、负载估计器和摩擦补偿器。Elbow-sideWINDER的硬件/软件组合系统在举重任务(2公斤和7公斤)中进行了测试。该实验重点关注双臂肱二头肌和肱三头肌激活水平的降低以及任务期间肘部运动范围的变化。结果表明,使用Elbow-sideWINDER时,负责肘部屈曲的肱二头肌激活程度明显降低(双臂平均而言,在2公斤负载时高达38.8%,在7公斤负载时高达25.7%)。对于肱三头肌,双臂平均而言,在2公斤负载时肌肉激活减少高达37.0%,在7公斤负载时减少35.1%。佩戴外骨骼时,任务期间肘部的运动范围最多减少了13.0°,但仍在安全范围内,并且可以由腰部或膝盖等其他关节进行补偿。这些结果非常令人鼓舞,为Elbow-sideWINDER及其控制策略的未来改进提供了良好的指标和重要线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d902/10369055/129a644ae732/fnbot-17-1168213-g0001.jpg

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