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Smart textile sensing system for human respiration monitoring based on fiber Bragg grating

机译:基于光纤布拉格光栅的人体呼吸监测智能纺织品传感系统

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Magnetic resonance imaging (MRI) has become an indispensable aid to diagnosis and treatment. As the doctor cannot accompany the patient, it is essential that the patient be monitored remotely to avoid the risk of respiration being impaired by anesthetic drugs or upper airway obstruction. A smart wearable textile sensing system is described in this paper. A fiber Bragg grating (FBG) with polymer encapsulation has been woven into an elastic bandage to detect the respiration motion. According to the strain principle of FBG, the breathing rate and intensity can be obtained by measuring the variety of FBG reflected wavelength. In order to eliminate the temperature cross-sensitivity, a FBG temperature sensor has also been woven into the bandage to achieve the temperature compensation computing. Based on the tunable Fabry-Perot filter wavelength demodulated theory, wavelength measuring method and data processing arithmetic have been presented, and the system with ARM microprocessor has been designed to process and display the breathing information. The experiments to the system have proved that the wavelength measuring range is about 40nm, the resolution of wavelength can arrive at 2pm, and the sampling rate is 5Hz.
机译:磁共振成像(MRI)已成为诊断和治疗必不可少的辅助工具。由于医生无法陪同患者,因此必须对患者进行远程监控,以免因麻醉药或上呼吸道阻塞而损害呼吸的风险。本文介绍了一种智能的可穿戴纺织品传感系统。具有聚合物封装的光纤布拉格光栅(FBG)已被编织成弹性绷带,以检测呼吸运动。根据FBG的应变原理,可以通过测量FBG反射波长的变化来获得呼吸频率和呼吸强度。为了消除温度交叉敏感度,还将FBG温度传感器编织到绷带中以实现温度补偿计算。基于可调Fabry-Perot滤波器的波长解调原理,提出了波长测量方法和数据处理算法,并设计了带有ARM微处理器的系统来处理和显示呼吸信息。对系统的实验证明,波长测量范围约为40nm,波长分辨率可达2pm,采样率为5Hz。

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