首页> 外文会议>IEEE International Solid- State Circuits Conference >27.3 A Piezoelectric Energy-Harvesting Interface Using Split-Phase Flipping-Capacitor Rectifier and Capacitor Reuse Multiple-VCR SC DC-DC Achieving 9.3× Energy-Extraction Improvement
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27.3 A Piezoelectric Energy-Harvesting Interface Using Split-Phase Flipping-Capacitor Rectifier and Capacitor Reuse Multiple-VCR SC DC-DC Achieving 9.3× Energy-Extraction Improvement

机译:27.3使用分相翻转电容器整流器和电容器重用的多VCR SC DC-DC压电能量收集接口可实现9.3倍的能量提取改进

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Piezoelectric energy harvesters (PEH) exhibit promising features to scavenge the ambient vibration energy for ubiquitous miniaturized internet of things (IoT) devices. For the traditional PEH using a full-bridge rectifier (FBR), the inherent capacitance (CP) limits the extractable AC-DC electrical power. By extending the damping duration, PEH interfaces employing non-linear techniques, such as the parallel-synchronized-switch harvesting-on-inductor (P-SSHI) [1], can increase the harvestable energy. However, they typically require bulky external high-Q inductors to enhance the extracted power. Recently, various inductor-less PEH interfaces exploiting only capacitors for flipping the PEH voltage during the zero-crossing of the PEH current (IP) have been reported [2-4]. However, their achievable energy extraction improvement depends highly on the number of flipping phases. This work proposes a split-phase flipping-capacitor rectifier (SPFCR) implementation entailing only 4 capacitors, while achieving the highest number of phases (21) when compared to prior art [2-4]. To resolve the lack of input power (Pin) adaptability in [2-4], this work proposes a capacitor-reuse multiple voltage-conversion-ratio (VCR) switched-capacitor (SC) DC-DC converter to reduce the charge redistribution loss. Maximum power point tracking (MPPT) is also accomplished using the fractional FBR open circuit voltage (VOC,FBR) for relaxed voltage tolerance, while raising the PEH extracted energy. This work demonstrates a measured 9.3× energy-extraction improvement when compared to a conventional FBR interface.
机译:压电能量收集器(PEH)具有广阔的前景,可以消除普遍存在的小型物联网(IoT)设备的环境振动能量。对于使用全桥整流器(FBR)的传统PEH,固有电容(C P )限制可提取的AC-DC电力。通过延长阻尼持续时间,采用非线性技术的PEH接口(例如,并联同步开关电感收集器(P-SSHI)[1])可以增加可收集的能量。但是,它们通常需要笨重的外部高Q电感来提高提取的功率。最近,各种无电感器PEH接口仅利用电容器在PEH电流过零时翻转PEH电压(I P )的报道[2-4]。但是,它们可实现的能量提取改进很大程度上取决于翻转阶段的数量。这项工作提出了一种分相倒相电容器整流器(SPFCR)实施方案,该方案仅需要4个电容器,而与现有技术[2-4]相比,可获得最大数量的相数(21)。解决输入功率不足的问题(P 位于 )在[2-4]中的适应性方面,这项工作提出了一种电容器重用倍压比(VCR)开关电容器(SC)DC-DC转换器,以减少电荷的重新分配损耗。最大功率点跟踪(MPPT)也可以使用分数FBR开路电压(V OC,FBR ),以降低电压容差,同时提高PEH提取的能量。与传统的FBR接口相比,这项工作证明了9.3倍的能量提取效率。

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