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Monitoring Respiration and Cardiac Activity Using Fiber Bragg Grating-Based Sensor

机译:使用基于光纤光栅的传感器监测呼吸和心脏活动

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摘要

This paper shows the design of a fiber-based sensor for living activities in human body and the results of a laboratory evaluation carried out on it. The authors have developed a device that allows for monitoring the vibrations of human body evoked by living activities—breathing and cardiac rhythm. The device consists of a Bragg grating inscribed into a single mode optical fiber and operating on a wavelength of around 1550 nm. The fiber Bragg grating (FBG) is mounted inside a pneumatic cushion to be placed between the backrest of the seat and the back of the monitored person. Deformations of the cushion, involving deformations of the FBG, are proportional to the vibrations of the body leaning on the cushion. Laboratory studies have shown that the sensor allows for obtaining dynamic strains on the sensing FBG in the range of 50–124 μ strain caused by breathing and approximately 8.3 μstrain induced by heartbeat, which are fully measurable by today''s FBG interrogation systems. The maximum relative measurement error of the presented sensor is 12%. The sensor''s simple design enables it to be easily implemented in pilot''s and driver''s seats for monitoring the physiological condition of pilots and drivers.
机译:本文展示了一种用于人体生活活动的基于纤维的传感器的设计以及在其上进行的实验室评估的结果。作者开发了一种设备,该设备可用于监测呼吸和心律等生活活动引起的人体振动。该设备由一个刻在单模光纤中的布拉格光栅组成,并在约1550nm的波长下工作。布拉格光栅(FBG)安装在气垫内,放置在座椅靠背和被监视人员的背部之间。坐垫的变形(包括FBG的变形)与靠在坐垫上的身体的振动成比例。实验室研究表明,该传感器允许在传感FBG上获得由呼吸引起的50–124μ应变范围内的动态应变,以及由心跳引起的约8.3μs应变,这在当今的FBG询问系统中可以完全测量到。所提供传感器的最大相对测量误差为12%。该传感器的简单设计使其可以轻松地安装在飞行员和驾驶员座位上,以监视飞行员和驾驶员的生理状况。

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