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A Wearable Health Monitoring System Self-powered by Human-motion Energy Harvester

机译:由人类运动能源收割机自我支持的可穿戴健康监测系统

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In this paper, we have proposed a self-powered wireless wearable health data tracking system based on an inertial rotary electromagnetic energy harvester. The whole system can be divided into three parts. The first part is the charging circuit. The energy harvester, which generate 1.65 V Root Mean Square (RMS) voltage and 32.15 mW power at the frequency of one foot while running (1 Hz), could convert kinetic energy of human motion into electrical energy to charge the Li-ion battery. The second part contains an Arduino Microcontroller Unit (MCU) and two sensors. These two sensors could monitor the temperature and the blood oxygen saturation (which can be used in calculation of heart rate) information of the feet and toes, respectively. In the last part, A Bluetooth module is applied to communicate with the MCU and send the health data to the cloud. Meanwhile, this data could be displayed on the smartphone. We also demonstrated the workflow of the whole system. With the energy harvester, the energy from human motion is used to drive sensors and the function of health monitoring is realized.
机译:在本文中,我们提出了一种基于惯性旋转电磁能量收割机的自动无线可佩戴健康数据跟踪系统。整个系统可分为三个部分。第一部分是充电电路。在运行(1 Hz)的同时产生1.65V根均线(RMS)电压和32.15MW功率的能量收割机可以将人体运动的动能转换为电能以对锂离子电池的电能转换为电能。第二部分包含Arduino微控制器单元(MCU)和两个传感器。这两个传感器可以分别监测温度和血氧饱和度(可用于计算脚和脚趾的心率)信息。在最后一部分中,应用蓝牙模块以与MCU通信并将运行状况数据发送到云。同时,可以在智能手机上显示此数据。我们还展示了整个系统的工作流程。利用能量收割机,人类运动的能量用于驱动传感器,实现健康监测的功能。

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