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Functional Evaluation of a Force Sensor-Controlled Upper-Limb Power-Assisted Exoskeleton with High Backdrivability

机译:具有高度反应性的力传感器控制的上肢功率辅助外骨骼功能评估

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摘要

A power-assisted exoskeleton should be capable of reducing the burden on the wearer’s body or rendering his or her work improved and efficient. More specifically, the exoskeleton should be easy to wear, be simple to use, and provide power assistance without hindering the wearer’s movement. Therefore, it is necessary to evaluate the backdrivability, range of motion, and power-assist capability of such an exoskeleton. This evaluation identifies the pros and cons of the exoskeleton, and it serves as the basis for its subsequent development. In this study, a lightweight upper-limb power-assisted exoskeleton with high backdrivability was developed. Moreover, a motion capture system was adopted to measure and analyze the workspace of the wearer’s upper limb after the exoskeleton was worn. The results were used to evaluate the exoskeleton’s ability to support the wearer’s movement. Furthermore, a small and compact three-axis force sensor was used for power assistance, and the effect of the power assistance was evaluated by means of measuring the wearer’s surface electromyography, force, and joint angle signals. Overall, the study showed that the exoskeleton could achieve power assistance and did not affect the wearer’s movements.
机译:功率辅助的外骨骼应该能够减轻佩戴者身体的负担或使他或她的工作改善和高效。更具体地说,外骨骼应该易于磨损,使用简单,并且在不阻碍穿着者的运动的情况下提供功率援助。因此,有必要评估这种外骨骼的运动范围,运动范围和功率辅助能力。该评估确定了外骨骼的优缺点,并且它是其随后发展的基础。在该研究中,开发了一种具有高积压性的轻质上肢功率辅助外骨骼。此外,采用运动捕获系统来测量和分析穿着外骨骼后佩戴者上肢的工作空间。结果用于评估外骨骼支持穿着者运动的能力。此外,使用小巧的三轴力传感器用于功率辅助,并且通过测量佩戴者的表面耳廓,力和关节角度信号来评估电力辅助的效果。总体而言,该研究表明,外骨骼可以实现电力援助,并没有影响佩戴者的运动。

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