使用MEMS传感器测量和传输生命体征

M. Guler, S. Ertugrul
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引用次数: 16

摘要

随着技术和科学的进步,电子产品变得越来越小,这使得研究人员和科学家能够将电子产品和互连编织到织物中。这项新技术能够建立一个名为“电子纺织品”的新概念,它为各种应用提供了经济高效的解决方案。在本文中,主要思想是通过将电子设备以紧凑的方式放置在服装中来监测人体的生命体征。在许多重要的身体体征中,姿势、呼吸频率和身体活动(如散步、跑步)都得到了监测。测量是用在许多应用中广泛使用的基于MEMS的加速度计进行的。电子元件被放置在织物中,形成arf衬衫,以监测生命体征。使用ARF-Shirt系统对10名受试者采集数据进行射频传输,并进行实时监测。在形成ARF-Shirt后,收集受试者的数据,然后用Labview进行分析。得到每个活动的特征幅度和频率范围。本课题实现了用MEMS加速度计测量人体生命体征,通过射频传输传输数据,用Labview对信号进行实时处理和分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measuring and Transmitting Vital Body Signs Using MEMS Sensors
With the advancements in technology and science, electronics have been getting smaller and smaller, which enables researchers and scientist to weave the electronics and interconnections into the fabric. This new technology enables to establish a new concept called "electronic-textiles (e-Textiles)", which allows cost-effective and efficient solutions for various applications. In this paper, the main idea is monitoring vital body signs by placing the electronic devices into a garment in a compact way. Among many vital body signs, posture, respiration rate and body activities like walking, running have been monitored. The measurements have been performed with a MEMS based accelerometer which is widely used in many applications. The electronic components have been placed into the fabric to form the ARF-Shirt to monitor vital body signs. Collected data from 10 subjects with ARF-Shirt system have been transmitted by RF transmission and monitored in real-time. After forming the ARF-Shirt, data were collected from subjects and then analyzed with Labview. The characteristic amplitude and frequency ranges were obtained for each activity. With this project, measuring a vital body sign with MEMS accelerometer, transmitting the data by RF Transmission, signal processing and analysis with Labview in real-time have been realized.
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