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Stress Loading Detection Method Using the FBG Sensor for Smart Textile

机译:使用FBG传感器的智能纺织品应力负荷检测方法

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In this paper, we propose a physiological stress measurement method that uses a fiber Bragg grating (FBG) sensor. There are several points on the surface of the human body at which the pulse wave can be measured, and when an FBG sensor can be positioned at any of these points, to measure the pulse wave signal. When a person is under stress, their pulse rate increases and the peak interval in the measured pulse wave signal becomes shorter. This peak interval change can be measured using the FBG sensor and analyzed using a Poincaré plot; the stress load can then be detected based on the shift in the plot position. The points on the Poincaré plot shift toward the lower left direction because of the stress loading. Depending on the amount of applied stress, the length by which the plot shifts changes. When the proposed measurement method is used, it is possible to continuously monitor a subject for stress by simply installing the optical fiber at a pulsation point. When optical fibers are woven into textile products, it becomes possible to detect stress load by wearing a modified garment. Therefore, this measurement method can be applied as a wearable stress sensor in smart textiles.
机译:在本文中,我们提出了一种使用光纤布拉格光栅(FBG)传感器的生理应力测量方法。人体表面上有几个可以测量脉搏波的点,并且当FBG传感器可以定位在这些点中的任何一个点时,就可以测量脉搏波信号。当人处于压力下时,他们的脉搏频率会增加,并且测得的脉搏波信号的峰值间隔会变短。可以使用FBG传感器测量此峰间隔变化,并使用庞加莱图进行分析。然后可以根据绘图位置的变化来检测应力负荷。由于应力负载,庞加莱图上的点向左下方移动。根据所施加的应力大小,曲线移动的长度会发生变化。当使用所提出的测量方法时,可以通过简单地在脉动点处安装光纤来连续地监测对象的压力。当将光纤编织到纺织品中时,可以通过穿着改良的衣服来检测应力负荷。因此,该测量方法可用作智能纺织品中的可穿戴应力传感器。

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