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Wearable E-Textile Wireless RF Power Supply based on a Textile Supercapacitor and a Flexible Rectenna Filament

机译:基于纺织超级电容器和柔性Rectenna灯丝的可穿戴电子纺织品无线RF电源

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Sustainable battery-free operation is a requirement for wearable electronic textiles. This work presents a complete wearable textile-based radio frequency energy harvester and an energy storage module. The rectifying-antenna (rectenna) receives incident sub-1 GHz RF power from a license-free transmitter and converts it to DC with up to 90% efficiency and 8 V DC output from under 4 mW of RF power. A spray-coated in-house textile 7.1 mF supercapacitor is integrated as an energy storage unit. Electrochemical Impedance Spectroscopy has been used to characterize the supercapacitor’s impedance and a four-branch circuit model has been obtained. The 7.1 mF textile supercapacitor has been demonstrated charging to 1 V (3.55 mJ) in under 11 seconds at 1.2 m separation from a wireless power source, demonstrating over 15% end-to-end efficiency, the highest charging efficiency of a textile supercapacitor from an integrated flexible energy source.
机译:可持续的无电池运行是可穿戴电子纺织品的要求。这项工作提出了一个完整的可穿戴的基于纺织品的射频能量收集器和一个能量存储模块。整流天线(rectenna)从免许可证的发射器接收低于1 GHz的入射RF功率,并将其转换为效率高达90%的DC,并从4 mW的RF功率中输出8 V DC。集成了喷涂的内部纺织7.1 mF超级电容器作为能量存储单元。电化学阻抗谱已用于表征超级电容器的阻抗,并获得了四分支电路模型。事实证明,与无线电源相距1.2 m时,7.1 mF纺织超级电容器可在11秒内充电至1 V(3.55 mJ),展现出超过15%的端到端效率,这是纺织超级电容器自充电以来的最高充电效率。集成的灵活能源。

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