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Power-Extraction Circuits for Piezoelectric Energy Harvesters in Miniature and Low-Power Applications

机译:微型和低功率应用中的压电能量收集器的功率提取电路

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摘要

When a piezoelectric energy harvester is connected to a simple load circuit, the damping force which the piezoelectric element is able to generate is often below the optimal value to maximize electrical power generation. Circuits that aim to increase the power output of a piezoelectric energy harvester do so by modifying the voltage onto which the piezoelectric current source drives its charge. This paper presents a systematic analysis and comparison of all the principal types of power extraction circuit that allow this damping force to be increased, under both ideal and realistic constraints. Particular emphasis is placed on low-amplitude operation. A circuit called single-supply prebiasing is shown to harvest more power than previous approaches. Most of the analyzed circuits able to increase the power output do so by synchronously inverting or charging the piezoelectric capacitance through an inductor. For inductor Q factors greater than around only 2, the single-supply prebiasing circuit has the highest power density of the analyzed circuits. The absence of diodes in conduction paths, achievable with a minimum number of synchronous rectifiers, means that the input excitation amplitude is not required to overcome a minimum value before power can be extracted, making it particularly suitable for microscale applications or those with a wide variation in amplitude.
机译:当将压电能量收集器连接到简单的负载电路时,压电元件能够产生的阻尼力通常低于最佳值,以最大程度地发电。旨在增加压电能量采集器功率输出的电路可以通过修改压电电流源驱动其电荷的电压来实现。本文对功率提取电路的所有主要类型进行了系统的分析和比较,这些功率提取电路在理想和现实的约束下都可以增加阻尼力。特别强调低振幅操作。与以前的方法相比,显示了一种称为单电源预偏置的电路可以收集更多的功率。大多数能够增加功率输出的分析电路都是通过使电感器对压电电容进行同步反相或充电来实现的。对于电感Q值仅大于2的情况,单电源预偏置电路具有所分析电路的最高功率密度。传导路径中不存在二极管,可以使用最少数量的同步整流器实现,这意味着在提取功率之前不需要输入激励幅度来克服最小值,这使其特别适合于微型应用或变化较大的应用在振幅上。

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  • 来源
    《Power Electronics, IEEE Transactions on》 |2012年第11期|p.4514-4529|共16页
  • 作者

    Dicken J.;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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