Kim Ji-Seon, Truong TranThuyNga, Kim Jooyong
Department of Smart Wearables Engineering, Soongsil University, Seoul 06978, Republic of Korea.
Polymers (Basel). 2023 Jan 18;15(3):503. doi: 10.3390/polym15030503.
This study presents a respiration sensor that is dependent on a parallel capacitor, including connection lines and electrodes embroidered on textiles. First, characterizations of the respiration capacitor using a silver thread, including a combination of porous Eco-flex simulating air in the lungs due to respiration, were evaluated using an LCR meter. Second, the effects of air gaps on the detection of respiration motions according to the change in electrode distance under pressure were presented. The data values were measured from 1 to 300 kHz using an LCR meter and dielectric test fixture. Third, actual breathing was examined in four patterns: normal breathing, deep breathing, hyperventilation, and apnea. The test was performed after fabricating a clothing-type breathing sensor. Finally, the change in capacitance for actual respiration was determined by wearing a clothing-type respiration sensor based on the data collected. The effectiveness of the respiration sensor was demonstrated by measuring it to discern all waveforms, cycles, and ranges associated with the breathing pattern.
本研究展示了一种基于并联电容器的呼吸传感器,包括绣在纺织品上的连接线和电极。首先,使用LCR仪表对采用银线的呼吸电容器进行特性分析,其中包括用多孔Eco-flex模拟因呼吸导致的肺部空气的组合。其次,介绍了根据压力下电极距离变化,气隙对呼吸运动检测的影响。使用LCR仪表和介电测试夹具在1至300 kHz范围内测量数据值。第三,以四种模式检查实际呼吸:正常呼吸、深呼吸、换气过度和呼吸暂停。在制作出服装型呼吸传感器后进行测试。最后,根据收集的数据,通过佩戴服装型呼吸传感器确定实际呼吸时的电容变化。通过测量该呼吸传感器以辨别与呼吸模式相关的所有波形、周期和范围,证明了其有效性。