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A High-Efficiency Energy Harvesting Interface for Implanted Biofuel Cell and Thermal Harvesters

机译:植入式生物燃料电池和热收集器的高效能量收集接口

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摘要

A dual-source energy harvesting interface that combines energy from implanted glucose biofuel cell and thermoelectric generator is presented. A single-inductor dual-input dual-output boost converter topology is employed to efficiently transfer the extracted power to the output. A dual-input feature enables the simultaneous maximum power extraction from two harvesters, while a dual-output allows a control circuit to perform complex digital functions at nW power levels. The control circuit reconfigures the converter to improve the efficiency and achieve zero-current and zero-voltage switching. The measurement results of the proposed boost converter, implemented in a 0.18 μm CMOS process, show a peak efficiency of 89.5% when both sources provide a combined input power of 66 μW. In the single-source mode, the converter achieves a peak efficiency of 85.2% at 23 μW for the thermoelectric source and 90.4% at 29 μW for the glucose biofuel cell. The converter can operate from minimum input voltages of 10 mV for the thermoelectric source and 30 mV for the glucose biofuel cell. 
机译:提出了一种双源能量收集界面,该界面结合了来自植入式葡萄糖生物燃料电池和热电发生器的能量。采用单电感双输入双输出升压转换器拓扑可有效地将提取的功率传输到输出。双输入功能可同时从两个收割机提取最大功率,而双输出则允许控制电路以nW功率电平执行复杂的数字功能。控制电路重新配置转换器,以提高效率并实现零电流和零电压开关。拟议的升压转换器的测量结果以0.18μmCMOS工艺实现,当两个电源提供66μW的组合输入功率时,其峰值效率为89.5%。在单源模式下,对于热电源,转换器在23μW时的峰值效率为85.2%,对于葡萄糖生物燃料电池在29μW时的峰值效率为90.4%。对于热电源,转换器的最小输入电压为10 mV,对于葡萄糖生物燃料电池,此转换器的最小输入电压为30 mV。

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