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Wearable Optical Fiber Sensor Based on a Bend Singlemode-Multimode-Singlemode Fiber Structure for Respiration Monitoring

机译:可穿戴光纤传感器,基于弯曲单片机 - 多模 - 单片机光纤结构,用于呼吸监测

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摘要

Respiration rate (RR) is an important information related to human physiological health. A wearable optical fiber sensor for respiration monitoring based on a bend singlemode-multimode-singlemode (SMS) fiber structure, which is highly sensitive to bend, is firstly proposed and experimentally demonstrated. The sensor fastened by an elastic belt on the abdomen of a person will acquire the respiration signal when the person breaths, which will introduce front and back movement of the abdomen, and thus bend of SMS fiber structure. Short-time Fourier transform (STFT) method is employed for signal processing to extract characteristic information of both the time and frequency domain of the measured waveform, which provides accurate RR measurement. Six different SMS fiber sensors have been tested by six individuals and the experimental results demonstrated that the RR signals can be effectively monitored among different individuals, where an average Pearson Correlation Coefficient of 0.88 of the respiration signal has been achieved, which agrees very well with that of commercial belt respiration sensor. The proposed technique can provide a new wearable and portable solution for monitoring of respiratory with advantage of easy fabrication and robust to environment.
机译:呼吸率(RR)是与人类生理健康有关的重要信息。基于弯曲单模 - 多模 - 单片机(SMS)光纤结构的呼吸监测的可穿戴光纤传感器,首先提出和实验证明了对弯曲的弯曲纤维结构。在人的腹部上由弹性带固定的传感器将在人呼吸时获取呼吸信号,这将引入腹部的正面和后部运动,从而弯曲SMS纤维结构。使用短时傅里叶变换(STFT)方法用于提取测量波形的时间和频域的特征信息,其提供精确的RR测量。六种不同的SMS光纤传感器已被六个人测试,实验结果表明,可以在不同的个体之间有效地监测RR信号,其中已经实现了0.88的平均Pearson相关系数,这与此相当良好商用带呼吸传感器。该技术可以提供一种新的可穿戴和便携式解决方案,用于监测呼吸,其利用易于制造和鲁棒环境。

著录项

  • 来源
    《Sensors Journal, IEEE》 |2021年第4期|4610-4617|共8页
  • 作者单位

    Key Laboratory of Nondestructive Test (Ministry of Education) Nanchang Hangkong University Nanchang China;

    Key Laboratory of Nondestructive Test (Ministry of Education) Nanchang Hangkong University Nanchang China;

    Key Laboratory of Nondestructive Test (Ministry of Education) Nanchang Hangkong University Nanchang China;

    Key Laboratory of Nondestructive Test (Ministry of Education) Nanchang Hangkong University Nanchang China;

    Key Laboratory of Nondestructive Test (Ministry of Education) Nanchang Hangkong University Nanchang China;

    Key Laboratory of Nondestructive Test (Ministry of Education) Nanchang Hangkong University Nanchang China;

    Research Center for Convergence Networks and Ubiquitous Services University of Science and Technology Beijing Beijing China;

    Research Center for Convergence Networks and Ubiquitous Services University of Science and Technology Beijing Beijing China;

    Research Center for Convergence Networks and Ubiquitous Services University of Science and Technology Beijing Beijing China;

    Key Laboratory of Nondestructive Test (Ministry of Education) Nanchang Hangkong University Nanchang China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Optical fiber sensors; Sensors; Optical fibers; Monitoring; Biomedical monitoring; Optical fiber networks; Interference;

    机译:光纤传感器;传感器;光纤;监测;生物医学监测;光纤网络;干扰;

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