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Power and frequency bandwidth improvement of piezoelectric energy harvesting devices using phase-shifted synchronous electric charge extraction interface circuit

机译:利用相移同步电荷提取接口电路改善压电能量采集装置的功率和频率带宽

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摘要

This article presents a new way to control the synchronous electric charge extraction interface circuit, which was formerly developed to improve the performances of piezoelectric vibration energy harvesting devices. An analytical model for energy harvesting systems including this new technique, called phase-shift synchronous electric charge extraction, is proposed. This model is then used to study the properties of this new control scheme in the cases of low and high electromechanical coupling. Contrary to the synchronous electric charge extraction technique which exhibited significant improvements in terms of harvested power for piezoelectric devices with low electromechanical coupling, the phase-shift synchronous electric charge extraction technique shows capability to increase the harvested power up to the theoretical limit for piezoelectric devices with high electromechanical coupling. In addition, the presented theoretical results show that the frequency bandwidth of piezoelectric energy harvesting devices may be substantially increased.
机译:本文提出了一种控制同步电荷提取接口电路的新方法,该方法是为了提高压电振动能量采集装置的性能而开发的。提出了一种包括这种新技术的能量收集系统的分析模型,称为相移同步电荷提取。然后,在低和高机电耦合情况下,使用该模型来研究此新控制方案的属性。与同步电荷提取技术相比,机电耦合低的压电器件在收集功率方面有显着改善,相移同步电荷提取技术显示了将收集到的功率提高到压电器件的理论极限的能力。高机电耦合。此外,提出的理论结果表明,压电能量采集设备的频率带宽可能会大大增加。

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