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Development of a Surface Muscle Pressure Monitoring System for Wearable Robotic Devices

机译:用于可穿戴机器人设备的表面肌肉压力监测系统的开发

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Monitoring of muscle activities of human limbs is essential for designing controllers of wearable robotic devices such as prosthetics, orthotics and exoskeletons. Human-robot interaction (HRI) is generally studied to control these devices and ascertain comfort levels of the wearer. Cognitive-HRI (cHRI) and physical-HRI (pHRI) are the two main types of HRI methods identified in literature. Surface electromyography (sEMG) signals of skeletal muscles are commonly used in cHRI methods to identify the motion intentions. However, sEMG signals are sensitive to the environmental conditions such as electric and magnetic disturbances. Alternatively, changes to muscle stiffness and volume are measured in pHRI methods. Accordingly, this paper presents a novel sensory system to detect motions of upper or lower limbs by monitoring surface-muscle pressure (SMP). It is comprised of specially designed ’pressurized-air-pouches’ made of silicone. Experiments were carried out with the developed SMP monitoring system to detect muscles activities during biceps curls. The results were compared against sEMG signals to evaluate the validity of the proposed method. The analysis indicated a strong correlation between the signals measured and verifies the potential of using SMP as an effective muscle activity sensing method.
机译:监测人体四肢的肌肉活动对于设计可穿戴机器人设备(例如义肢,矫形器和外骨骼)的控制器至关重要。人们通常对人机交互(HRI)进行研究,以控制这些设备并确定佩戴者的舒适度。认知HRI(cHRI)和物理HRI(pHRI)是文献中确定的两种主要的HRI方法。骨骼肌的表面肌电图(sEMG)信号通常在cHRI方法中用于识别运动意图。但是,sEMG信号对环境条件敏感,例如电磁干扰。可替代地,可以通过pHRI方法测量肌肉硬度和体积的变化。因此,本文提出了一种新颖的感觉系统,可以通过监视表面肌肉压力(SMP)来检测上肢或下肢的运动。它由特殊设计的硅胶制“压缩空气袋”组成。使用开发的SMP监控系统进行了实验,以检测肱二头肌卷发期间的肌肉活动。将结果与sEMG信号进行比较,以评估所提出方法的有效性。分析表明,所测信号之间具有很强的相关性,并验证了使用SMP作为有效的肌肉活动感测方法的潜力。

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