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Nonlinear Dynamic Analysis of Bistable Piezoelectric Energy Harvester with a New-Type Dynamic Amplifier

机译:基于新型动态放大器的双稳态压电能量采集器非线性动态分析

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摘要

A distributed parametric mathematical model of a new-type dynamic magnifier for a bistable cantilever piezoelectric energy harvester is proposed by using the generalized Hamilton principle. The new-type dynamic magnifier consists of a two-spring-mass system, one is placed between the fixed end of the piezoelectric beam and the L-shaped frame, and the other is placed between the L-shaped frame and the base structure. We used the harmonic balance method to obtain the analytical expressions for the steadystate displacement, steady-state output voltage, and power amplitude of the system. The effect of the distance between the magnets, the spring stiffness ratio and mass ratio of the two dynamic magnifiers, and the load resistance on the performance of the harvester is investigated. Analytical results show that compared with the bistable piezoelectric energy harvester with a typical spring-mass dynamic magnifier, the proposed new-type energy harvester system with a two-spring-mass dynamic magnifier can provide higher output power over a broader frequency band, and increasing the mass ratio of the magnifier tip mass to the tip magnet can significantly increase the output power of the BPEH + TDM system. Properly choosing the stiffness ratio of the two dynamic amplifiers can obviously improve the harvested power of the piezoelectric energy harvester at a low excitation level.
机译:利用广义Hamilton原理,提出了一种用于双稳态悬臂压电能量采集器的新型动态放大镜的分布式参数化数学模型。新型动态放大镜由两个弹簧质量系统组成,一个放置在压电梁固定端与L形框架之间,另一个放置在L形框架与底座结构之间。采用谐波平衡法得到系统的稳态位移、稳态输出电压和功率幅值的解析表达式。研究了磁体之间的距离、两个动态放大镜的弹簧刚度比和质量比以及负载阻力对收割机性能的影响。分析结果表明,与采用典型弹簧质量动态放大镜的双稳态压电能量采集器相比,所提出的采用双弹簧质量动态放大镜的新型能量采集器系统可以在更宽的频带上提供更高的输出功率,增加放大镜尖端质量与尖端磁铁的质量比可以显著提高BPEH+TDM系统的输出功率。正确选择两个动态放大器的刚度比,可以明显提高压电能量采集器在低激励水平下的采集功率。

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