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An efficient piezoelectric energy-harvesting interface circuit using a bias-flip rectifier and shared inductor

机译:使用偏置翻转整流器和共享电感器的高效压电能量收集接口电路

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Energy harvesting is an emerging technology with applications to handheld, portable and implantable electronics. Harvesting ambient vibration energy through piezoelectric (PE) means is a popular energy harvesting technique that can potentially supply 10 to 100's of muW of available power. One of the limitations of existing PE harvesters is in their interface circuitry. Commonly used full-bridge rectifiers and voltage doublers severely limit the electrical power extractable from a PE harvesting element. Further, the power consumed in the control circuits of these harvesters reduces the amount of usable electrical power. In this paper, a bias-flip rectifier that can improve upon the power extraction capability of existing full-bridge rectifiers by up to 4.2times is presented. An efficient control circuit with embedded DC-DC converters that can share their filter inductor with the bias-flip rectifier thereby reducing the volume and component count of the overall solution is demonstrated. The circuit diagram and figures are also given.
机译:能量收集是一种新兴技术,应用于手持式,便携式和植入式电子产品。通过压电(PE)方式收集环境振动能量是一种流行的能量收集技术,可以潜在地提供10至100毫微瓦的可用功率。现有PE收割机的局限性之一在于其接口电路。常用的全桥整流器和倍压器严重限制了从PE采集元件提取的电能。此外,这些收割机的控制电路中消耗的功率减少了可用的电能。本文提出了一种偏置翻转整流器,它可以将现有全桥整流器的功率提取能力提高多达4.2倍。展示了一种有效的控制电路,该电路具有嵌入式DC-DC转换器,可以与偏置翻转整流器共享其滤波电感器,从而减少整体解决方案的体积和组件数量。还给出了电路图和图。

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