Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology (KAIST), 271 Daehak-ro, Yuseong-gu, Daejeon, 34141, Republic of Korea.
Center for Medical Convergence Metrology, Korea Research Institute of Standards and Science (KRISS), 267 Gajeong-ro, Yuseong-gu, Daejeon, 34113, Republic of Korea.
Sci Rep. 2018 Jan 19;8(1):1181. doi: 10.1038/s41598-018-19239-8.
We propose watch-type sweat rate sensors capable of automatic natural ventilation by integrating miniaturized thermo-pneumatic actuators, and experimentally verify their performances and applicability. Previous sensors using natural ventilation require manual ventilation process or high-power bulky thermo-pneumatic actuators to lift sweat rate detection chambers above skin for continuous measurement. The proposed watch-type sweat rate sensors reduce operation power by minimizing expansion fluid volume to 0.4 ml through heat circuit modeling. The proposed sensors reduce operation power to 12.8% and weight to 47.6% compared to previous portable sensors, operating for 4 hours at 6 V batteries. Human experiment for thermal comfort monitoring is performed by using the proposed sensors having sensitivity of 0.039 (pF/s)/(g/mh) and linearity of 97.9% in human sweat rate range. Average sweat rate difference for each thermal status measured in three subjects shows (32.06 ± 27.19) g/mh in thermal statuses including 'comfortable', 'slightly warm', 'warm', and 'hot'. The proposed sensors thereby can discriminate and compare four stages of thermal status. Sweat rate measurement error of the proposed sensors is less than 10% under air velocity of 1.5 m/s corresponding to human walking speed. The proposed sensors are applicable for wearable and portable use, having potentials for daily thermal comfort monitoring applications.
我们提出了一种手表式汗液率传感器,通过集成微型热气动致动器,可以实现自动自然通风,并通过实验验证了其性能和适用性。以前使用自然通风的传感器需要手动通风过程或高功率的大型热气动致动器,将汗液率检测室提升到皮肤上方进行连续测量。通过热回路建模,将扩展流体体积最小化至 0.4ml,从而降低了操作功率。与以前的便携式传感器相比,所提出的传感器将操作功率降低了 12.8%,重量降低了 47.6%,在 6V 电池下可运行 4 小时。通过使用在人体汗液率范围内灵敏度为 0.039(pF/s)/(g/mh)和线性度为 97.9%的所提出的传感器,进行了热舒适性监测的人体实验。在包括“舒适”、“微温”、“温暖”和“热”在内的热状态下,三个测试对象的每个热状态测量的平均汗液率差异为(32.06±27.19)g/mh。因此,所提出的传感器可以区分和比较四个阶段的热状态。在对应于人类步行速度的 1.5m/s 的空气速度下,所提出的传感器的汗液率测量误差小于 10%。所提出的传感器适用于可穿戴和便携式使用,具有用于日常热舒适性监测应用的潜力。