首页> 外文期刊>Sensors Journal, IEEE >Noncontact Respiration Rate Measurement System Using an Ultrasonic Proximity Sensor
【24h】

Noncontact Respiration Rate Measurement System Using an Ultrasonic Proximity Sensor

机译:使用超声波接近传感器的非接触式呼吸速率测量系统

获取原文
获取原文并翻译 | 示例
           

摘要

This research presents the ultrasonic proximity sensor approach to respiration measurement. The ultrasonic proximity sensor measures respiration signatures and rates in real-time and for long-term monitoring, which is necessary for mobility from the end-user perspective. The study used a 240 kHz ultrasonic sensor to measure the time of flight of a sound wave between the transmitted signal and received signal during respiration in the abdominal wall-motion. Respiration rates measured with the ultrasonic proximity sensor were then compared with those measured with a thermocouple sensor on ten male subjects. Data from the measurement of respiration rates at 100 cm is provided. We have used this data from the method comparison study to confirm agreement with the reference signal to determine that the current version of respiratory rate detection system using ultrasonic can successfully measure respiration rates. The proposed respiratory measurement method could be used to monitor an unconscious person without the need to apply electrodes or other sensors in the correct position and to wire the subject to the system. Monitoring respiration using ultrasonic sensor offers a promising possibility of noncontact measurement of respiration rates. In particular, this technology offers a potentially inexpensive means to extend applications to consumer home-healthcare and mobile-healthcare products. Further advances in the sensor design, system design and signal processing can increase the range and quality of the measurement, broadening the potential application areas of this technology.
机译:这项研究提出了用于呼吸测量的超声接近传感器方法。超声波接近传感器可实时测量呼吸信号和呼吸频率,并进行长期监测,这对于最终用户的移动性而言是必不可少的。这项研究使用了一个240 kHz的超声波传感器来测量在腹壁运动中呼吸期间声波在发射信号和接收信号之间的传播时间。然后将超声波接近传感器测量的呼吸速率与热电偶传感器测量的十个男性受试者的呼吸速率进行比较。提供了在100厘米处呼吸速率的测量数据。我们已经使用了来自方法比较研究的数据来确认与参考信号的一致性,以确定当前版本的使用超声的呼吸频率检测系统可以成功地测量呼吸频率。所提出的呼吸测量方法可用于监视失去知觉的人,而无需在正确的位置上应用电极或其他传感器并将受试者连接到系统。使用超声传感器监测呼吸提供了一种非接触式测量呼吸速率的有希望的可能性。尤其是,该技术提供了一种潜在的廉价方法,可将应用程序扩展到消费者家庭保健和移动保健产品。传感器设计,系统设计和信号处理方面的进一步进步可以扩大测量范围和质量,从而扩大该技术的潜在应用领域。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号