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首页> 外文期刊>Journal of Low Power Electronics >A 140 mV Self-Starting 10 mW DC/DC Converter for Powering Low-Power Electronic Devices from Low-Voltage Microbial Fuel Cells
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A 140 mV Self-Starting 10 mW DC/DC Converter for Powering Low-Power Electronic Devices from Low-Voltage Microbial Fuel Cells

机译:一个140 mV自启动10 mW DC / DC转换器,用于通过低压微生物燃料电池为低功率电子设备供电

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摘要

This paper presents an original self-starting DC/DC converter for low-power and low-voltage applications such as energy harvesting from microbial fuel cells to supply low-power electronic devices. Design is performed according to specifications issued from the stringent characteristics of microbial fuel cells. The harvested power reaches 10 mW under 0.3 V input voltage for the ten 1.3-liter experimental microbial fuel cells connected in parallel. The converter is adapted from a boost topology. It includes a self-oscillating sub-circuit for autonomous operation and a simple analog input-voltage control to harvest maximum energy from the source. The paper presents experimental results from a discrete and low-cost prototype. A global efficiency of more than 73% is achieved for 0.3 V input-voltage and under realistic harvesting conditions for the MFCs and the converter prototype.
机译:本文提出了一种原始的自启动DC / DC转换器,用于低功率和低压应用,例如从微生物燃料电池收集能量以提供低功率电子设备。根据微生物燃料电池的严格特性发布的规格进行设计。在十个1.3升实验微生物燃料电池并联连接的情况下,在0.3 V输入电压下,采集的功率达到10 mW。该转换器采用升压拓扑结构。它包括一个用于自动操作的自振荡子电路和一个简单的模拟输入电压控制,以从电源中获取最大能量。本文介绍了一个离散的低成本原型的实验结果。对于0.3 V输入电压以及在MFC和转换器原型的实际采集条件下,全球效率达到73%以上。

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