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实现准确、经济高效、超低功耗和非侵入式呼吸监测:一种可重复使用的无线可穿戴传感器,用于现成的 KN95 口罩。

Towards Accurate, Cost-Effective, Ultra-Low-Power and Non-Invasive Respiration Monitoring: A Reusable Wireless Wearable Sensor for an Off-the-Shelf KN95 Mask.

机构信息

College of Computer Science and Artificial Intelligence, Wenzhou University, Wenzhou 325035, China.

出版信息

Sensors (Basel). 2021 Oct 9;21(20):6698. doi: 10.3390/s21206698.

Abstract

Respiratory rate is a critical vital sign that indicates health condition, sleep quality, and exercise intensity. This paper presents a non-invasive, ultra-low-power, and cost-effective wireless wearable sensor, which is installed on an off-the-shelf KN95 mask to facilitate respiration monitoring. The sensing principle is based on the periodic airflow temperature variations caused by exhaled hot air and inhaled cool air in respiratory cycles. By measuring the periodic temperature variations at the exhalation valve of mask, the respiratory parameters can be accurately and reliably detected, regardless of body movements and breathing pathways through nose or mouth. Specifically, we propose a voltage divider with controllable resistors and corresponding selection criteria to improve the sensitivity of temperature measurement, a peak detection algorithm with spline interpolation to increase sampling period without reducing the detection accuracy, and effective low-power optimization measures to prolong the battery life. The experimental results have demonstrated the effectiveness of the proposed sensor, showing a small mean absolute error (MAE) of 0.449 bpm and a very low power consumption of 131.4 μW. As a high accuracy, low cost, low power, and reusable miniature wearing device for convenient respiration monitoring in daily life, the proposed sensor holds promise in real-world feasibility.

摘要

呼吸频率是一个关键的生命体征,它可以反映健康状况、睡眠质量和运动强度。本文提出了一种非侵入式、超低功耗且经济实惠的无线可穿戴传感器,它被安装在现成的 KN95 口罩上,以方便进行呼吸监测。该传感器的工作原理基于呼吸周期中呼出的热空气和吸入的冷空气引起的周期性气流温度变化。通过测量口罩呼气阀处的周期性温度变化,可以准确可靠地检测呼吸参数,而不受身体运动和通过鼻子或嘴呼吸的影响。具体来说,我们提出了一种带有可控电阻的电压分压器以及相应的选择标准,以提高温度测量的灵敏度;提出了一种带有样条插值的峰值检测算法,在不降低检测精度的情况下增加采样周期;并采取了有效的低功耗优化措施来延长电池寿命。实验结果证明了所提出传感器的有效性,其平均绝对误差(MAE)为 0.449 bpm,功耗非常低,仅为 131.4 μW。作为一种高精度、低成本、低功耗且可重复使用的微型穿戴式设备,用于日常生活中方便的呼吸监测,所提出的传感器具有很高的实际可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/142e/8540598/798492917043/sensors-21-06698-g001.jpg

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