Solar powered wrist worn acquisition system for continuous photoplethysmogram monitoring.

EMBC(2014)

引用 26|浏览3
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摘要
We present a solar-powered, wireless, wrist-worn platform for continuous monitoring of physiological and environmental parameters during the activities of daily life. In this study, we demonstrate the capability to produce photoplethysmogram (PPG) signals using this platform. To adhere to a low power budget for solar-powering, a 574 nm green light source is used where the PPG from the radial artery would be obtained with minimal signal conditioning. The system incorporates two monocrystalline solar cells to charge the onboard 20 mAh lithium polymer battery. Bluetooth Low Energy (BLE) is used to tether the device to a smartphone that makes the phone an access point to a dedicated server for long term continuous storage of data. Two power management schemes have been proposed depending on the availability of solar energy. In low light situations, if the battery is low, the device obtains a 5-second PPG waveform every minute to consume an average power of 0.57 mW. In scenarios where the battery is at a sustainable voltage, the device is set to enter its normal 30 Hz acquisition mode, consuming around 13.7 mW. We also present our efforts towards improving the charge storage capacity of our on-board super-capacitor.
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关键词
light sources,bluetooth low energy,information storage,continuous photoplethysmogram monitoring,biomedical telemetry,photoplethysmography,low battery condition,low power budget,time 1 min,monocrystalline solar cells,low light situations,daily life activity,telemedicine,power 13.7 mw,ble,solar power,blood vessels,patient monitoring,wavelength 574 nm,power 0.57 mw,wireless wrist-worn platform,smartphone,power management schemes,continuous physiological parameter monitoring,low-power electronics,body sensor networks,frequency 30 hz,data acquisition,continuous environmental parameter monitoring,radial artery ppg,ppg waveform acquisition,average power consumption,solar powered wrist worn acquisition system,solar cells,dedicated server,bluetooth,charge storage capacity,ppg signals production,on-board supercapacitor,smart phones,sustainable battery voltage condition,green light source,secondary cells,medical computing,long term continuous data storage,onboard lithium polymer battery charging,biomedical electronics,minimal signal conditioning,solar energy availability dependence,time 5 s
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