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Experimental evaluation of a sEMG-based control for elbow wearable assistive devices during load lifting tasks

机译:举重任务期间基于sEMG的肘关节可穿戴辅助设备控件的实验评估

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In this work, a surface skin electromyography(sEMG)-based control solution for elbow wearable assistive devices during load lifting tasks is presented. The goal of the controller consists in limiting the user's muscle activity during the task execution, in such a way that the assistive device can partially compensate the load-related biceps muscle effort. Since sEMG-driven control strategies based on the estimation of the joint torques generally requires complex task- and subject-dependent training sessions for tuning the control algorithms, here a more direct control approach is proposed, based on a muscle activity error related proportional-integral action together with an double-threshold activation logic. The controller's parameters are easily set by means of a fast, online and automatic subject calibration procedure, ensuring a simple adjustability to different users. An experimental phase has been conducted in order to evaluate the sEMG-based control performance involving four healthy subjects, using as wearable assistive device a twisted string action module, which is particularly suitable for assistive applications because of its lightness and compactness. Results show that the control strategy is able to successfully limit the EMG activity of the subjects during the lifting tasks, providing preliminary outcomes and promising possibilities for the use of twisted string-based technologies to assist human joints and muscles.
机译:在这项工作中,提出了一种基于表面皮肤肌电图(sEMG)的在举重任务期间用于肘部可穿戴辅助设备的控制解决方案。控制器的目的在于限制用户在任务执行过程中的肌肉活动,以使辅助设备可以部分补偿与负荷有关的二头肌肌肉力量。由于基于关节转矩估计的sEMG驱动控制策略通常需要复杂的任务和受训对象训练课程来调整控制算法,因此在此提出了一种基于肌肉活动误差相关的比例积分的更直接的控制方法。动作和双阈值激活逻辑。控制器的参数可通过快速,在线和自动的主题校准程序轻松设置,从而确保了针对不同用户的简单可调性。为了评估涉及四个健康受试者的基于sEMG的控制性能,已经进行了一个实验阶段,使用了扭弦操作模块作为可穿戴辅助设备,该模块由于其轻便和紧凑而特别适合于辅助应用。结果表明,该控制策略能够成功地限制受试者在举重任务期间的肌电图活动,从而为使用扭弦技术辅助人体关节和肌肉提供初步结果和有希望的可能性。

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