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Evaluation of Joint Motion Sensing Efficiency According to the Implementation Method of SWCNT-Coated Fabric Motion Sensor

机译:根据SWCNT涂层织物运动传感器的实现方法评估关节运动感应效率

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摘要

The purpose of this study was to investigate the effects of the shape and attachment position of stretchable textile piezoresistive sensors coated with single-walled carbon nanotubes on their performance in measuring the joint movements of children. The requirements for fabric motion sensors suitable for children are also identified. The child subjects were instructed to wear integrated clothing with sensors of different shapes (rectangular and boat-shaped), attachment positions (at the knee and elbow joints or 4 cm below the joints). The change in voltage caused by the elongation and contraction of the fabric sensors was measured for the flexion-extension motions of the arms and legs at 60°/s (three measurements of 10 repetitions each for the 60° and 90° angles, for a total of 60 repetitions). Their reliability was verified by analyzing the agreement between the fabric motion sensors and attached acceleration sensors. The experimental results showed that the fabric motion sensor that can measure children’s arm and leg motions most effectively is the rectangular-shaped sensor attached 4 cm below the joint. In this study, we developed a textile piezoresistive sensor suitable for measuring the joint motion of children, and analyzed the shape and attachment position of the sensor on clothing suitable for motion sensing. We showed that it is possible to sense joint motions of the human body by using flexible fabric sensors integrated into clothing.
机译:这项研究的目的是调查涂有单壁碳纳米管的可拉伸纺织压阻传感器的形状和附着位置对其在测量儿童关节运动中的性能的影响。还确定了适用于儿童的织物运动传感器的要求。指导儿童受试者穿上具有不同形状(矩形和船形)传感器,固定位置(在膝关节和肘关节处或关节下方4 cm处)的一体式服装。对于臂和腿在60°/ s时的屈伸运动,测量了由织物传感器的伸长和收缩引起的电压变化(对于60°和90°角,分别进行10次重复的3次测量)。总共60次重复)。通过分析织物运动传感器和连接的加速度传感器之间的一致性,验证了它们的可靠性。实验结果表明,可以最有效地测量儿童手臂和腿部动作的织物运动传感器是连接在关节下方4 cm处的矩形传感器。在这项研究中,我们开发了一种适用于测量儿童关节运动的纺织压阻传感器,并分析了该传感器在衣服上的形状和附着位置,以适合进行运动感应。我们表明,可以通过使用集成在衣服中的柔性织物传感器来感测人体的关节运动。

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