State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instrument, Tsinghua University, Beijing, 100084, China.
Adv Sci (Weinh). 2023 Oct;10(29):e2303114. doi: 10.1002/advs.202303114. Epub 2023 Aug 17.
Energy-autonomous wearable human activity monitoring is imperative for daily healthcare, benefiting from long-term sustainable uses. Herein, a fully self-powered wearable system, enabling real-time monitoring and assessments of human multimodal health parameters including knee joint movement, metabolic energy, locomotion speed, and skin temperature, which are fully self-powered by highly-efficient flexible thermoelectric generators (f-TEGs) is proposed and developed. The wearable system is composed of f-TEGs, fabric strain sensors, ultra-low-power edge computing, and Bluetooth. The f-TEGs worn on the leg not only harvest energy from body heat and supply power sustainably for the whole monitoring system, but also serve as zero-power motion sensors to detect limb movement and skin temperature. The fabric strain sensor made by printing PEDOT: PSS on pre-stretched nylon fiber-wrapped rubber band enables high-fidelity and ultralow-power measurements on highly-dynamic knee movements. Edge computing is elaborately designed to estimate multimodal health parameters including time-varying metabolic energy in real-time, which are wirelessly transmitted via Bluetooth. The whole monitoring system is operated automatically and intelligently, works sustainably in both static and dynamic states, and is fully self-powered by the f-TEGs.
自供电可穿戴人体活动监测对于日常医疗保健至关重要,得益于长期可持续使用。在此,我们提出并开发了一种完全自供电的可穿戴系统,能够实时监测和评估人体多模态健康参数,包括膝关节运动、代谢能量、运动速度和皮肤温度,这些参数完全由高效柔性热电发生器(f-TEG)自供电。该可穿戴系统由 f-TEG、织物应变传感器、超低功耗边缘计算和蓝牙组成。腿部佩戴的 f-TEG 不仅可以从人体热量中收集能量,为整个监测系统提供可持续的电源,还可以作为零功率运动传感器来检测肢体运动和皮肤温度。通过在预拉伸尼龙纤维包裹的橡胶带上印刷 PEDOT:PSS 制成的织物应变传感器,可以对高度动态的膝关节运动进行高保真和超低功率测量。边缘计算经过精心设计,可实时估计包括时变代谢能量在内的多模态健康参数,并通过蓝牙无线传输。整个监测系统自动智能运行,在静态和动态状态下都能持续工作,并完全由 f-TEG 自供电。