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A Broadband Bistable Piezoelectric Energy Harvester With Nonlinear High-Power Extraction

机译:具有非线性高功率提取的宽带双稳态压电能量采集器

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This paper presents a nonlinear vibration energy harvester, which combines a nonlinear bistable broadband piezoelectric cantilever used to transduce ambient vibration energy, with synchronized capture for efficient harvesting over broadband sources. An accurate model of the bistable transducer, that augments the Butterworth van Dyke model to capture the external magnetic force added as a bias to the external vibrations, is presented. Its validity has been demonstrated through physical implementation and experimental validation against simulation of the mathematical model. For efficient extraction of the transduced energy, nonlinear extraction circuits, namely synchronous charge extraction (SCE) and parallel synchronized switch harvesting on inductor (SSHI), are employed. The switching in these circuits is implemented using a fully self-propelled, low-power electronic breaker circuit, capable of detecting extrema in the waveform to perform switching. Both simulated and experimental power outputs from the bistable harvester have been presented, with the SCE and parallel-SSHI providing average outputs with more than 100-fold increase over the harvested power reported in the literature for the same input, and further, even more significant gains are observed for broadband excitations.
机译:本文介绍了一种非线性振动能量采集器,该非线性采集器将用于转换环境振动能量的非线性双稳态宽带压电悬臂与同步捕获相结合,可在宽带源上进行有效采集。提出了双稳态换能器的精确模型,该模型增强了Butterworth van Dyke模型,以捕获作为对外部振动的偏置而添加的外部磁力。通过物理实现和针对数学模型仿真的实验验证,证明了其有效性。为了有效地提取所转换的能量,采用了非线性提取电路,即同步电荷提取(SCE)和电感上的并行同步开关收集(SSHI)。这些电路中的开关是使用完全自我推进的低功率电子断路器电路实现的,该电路能够检测波形的极值以执行开关。已经介绍了双稳态收割机的模拟和实验电源输出,其中SCE和parallel-SSHI提供的平均输出比文献中报道的相同输入的采集电源增加了100倍以上,并且甚至更重要宽带激励观察到增益。

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