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Harmonic analysis and experimental validation of bistable vibration energy harvesters interfaced with rectifying electrical circuits

机译:与整流电路对接的双稳态振动能量采集器的谐波分析和实验验证

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The high-performing, nonlinear vibration energy harvesters are conventionally investigated when integrated with simplified resistive electrical circuits (AC circuits), while in fact DC voltages are needed for electronics and rechargeable batteries in practical applications. To lead to an accurate and effective set of design guidelines for realistic energy harvesting system development, an analytical, harmonic balance based method is proposed to characterize the steady state performance and investigate the DC circuit effects. During the route of the analysis method, the induced nonlinear, piecewise piezovoltage is firstly approximated via smooth dynamic responses based on the energy equivalence, which enables the followed harmonic balance operation to analytically estimate the vibration amplitude. The parameter studies show the pros and cons of the coupling constant and resistive load. In one side, with increasing the coupling constant or load resistance during their moderate range, higher electric power is extracted. In the other side, higher piezoelectric coupling and resistive load compromise the beneficial bandwidth of snap-through vibrations. Moreover, comparisons are conducted to reveal the different structural roles of the standard electrical circuit and AC circuit. It is found that AC circuit exhibits equivalent damping effect while the standard rectifying electrical circuit exhibits both equivalent damping and stiffness effects to the harvester system. These different circuit effects explain the theoretically predicted and numerically validated phenomena that the standard rectifying electrical circuit extracts less electric power than AC circuit under moderate piezoelectric coupling constants and resistive loads, while outperforms AC circuit when the coupling constants or load resistances are relatively large. (C) 2019 Elsevier B.V. All rights reserved.
机译:当与简化的电阻电路(AC电路)集成在一起时,通常会研究高性能的非线性振动能量收集器,而实际上,在实际应用中,电子设备和可充电电池需要直流电压。为了针对实际的能量收集系统开发提出一套准确有效的设计指南,提出了一种基于分析,谐波平衡的方法来表征稳态性能并研究直流电路的影响。在分析方法的过程中,首先基于能量等效性通过平滑的动态响应来近似感应的非线性分段压电电压,这使得随后的谐波平衡操作能够分析地估计振动幅度。参数研究表明了耦合常数和电阻负载的优缺点。一方面,随着耦合系数或负载电阻在适当范围内的增大,可以提取更高的电功率。另一方面,较高的压电耦合和阻性负载会损害快速振动的有益带宽。此外,进行比较以揭示标准电路和交流电路的不同结构作用。发现交流电路表现出等效的阻尼效果,而标准整流电路表现出对收割系统的等效阻尼和刚度效果。这些不同的电路效应解释了在理论上预测和数字验证的现象,即在适度的压电耦合常数和电阻性负载下,标准整流电路比交流电路提取的电能少,而当耦合常数或负载电阻较大时,其性能优于交流电路。 (C)2019 Elsevier B.V.保留所有权利。

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