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High-performance flexible energy storage and harvesting system for wearable electronics

机译:用于可穿戴电子设备的高性能灵活的能量存储和收集系统

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摘要

This paper reports on the design and operation of a flexible power source integrating a lithium ion battery and amorphous silicon solar module, optimized to supply power to a wearable health monitoring device. The battery consists of printed anode and cathode layers based on graphite and lithium cobalt oxide, respectively, on thin flexible current collectors. It displays energy density of 6.98 mWh/cm2 and demonstrates capacity retention of 90% at 3C discharge rate and ~99% under 100 charge/discharge cycles and 600 cycles of mechanical flexing. A solar module with appropriate voltage and dimensions is used to charge the battery under both full sun and indoor illumination conditions, and the addition of the solar module is shown to extend the battery lifetime between charging cycles while powering a load. Furthermore, we show that by selecting the appropriate load duty cycle, the average load current can be matched to the solar module current and the battery can be maintained at a constant state of charge. Finally, the battery is used to power a pulse oximeter, demonstrating its effectiveness as a power source for wearable medical devices.
机译:本文报告了一种集成了锂离子电池和非晶硅太阳能模块的柔性电源的设计和操作,该电源经过优化可为可穿戴健康监测设备供电。电池由分别基于石墨和锂钴氧化物的印刷阳极层和阴极层组成,并分别位于薄的柔性集电器上。它的能量密度为6.98 mWh / cm 2 ,在3C放电速率下的容量保持率为90%,在100次充放电循环和600次机械挠曲下的容量保持率为〜99%。具有适当电压和尺寸的太阳能电池模块可在充满阳光的情况下和室内照明条件下为电池充电,并显示增加了太阳能电池模块可在给负载供电时延长充电周期之间的电池寿命。此外,我们表明,通过选择适当的负载占空比,平均负载电流可以与太阳能电池组件的电流匹配,并且电池可以保持恒定的充电状态。最后,该电池用于为脉搏血氧饱和度仪供电,证明其作为可穿戴医疗设备电源的有效性。

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