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Simulation and experiment on bridge-shaped nonlinear piezoelectric vibration energy harvester

机译:桥梁形非线性压电振动能量收割机的仿真与实验

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摘要

There is abundant of vibration energy in environment. Using piezoelectric energy harvesters to power ultra-low power wireless sensors has become a hot topic in recent years. Most piezoelectric energy harvesters have satisfactory output only at one resonant frequency, while once the external excitation frequency deviates from the resonant frequency, the voltage output will drop significantly. Therefore, this paper proposes a bridge-shaped piezoelectric energy harvester to broaden the frequency band for energy harvesting, and the harvester can adaptively adjust the natural frequency of the system to match the external excitation. Based on the two-dimensional nonlinear Euler-Bernoulli beam hypothesis and the Hamilton principle, the distributed-parameter dynamic model of the nonlinear energy harvesting system is set up. By use of variation operator and nondimensionalization, we derive the dimensionless electromechanical coupling equations. With the harmonic balance method, the approximate equations for calculating voltage amplitude and average power are derived. And then the model is numerically solved and analyzed by considering the influence of excitation frequency, excitation amplitude, mass position and load on the output performance of the bridge-type piezoelectric energy harvester. Finally, various comprehensive experiments are performed to verify the results of simulation, and the dynamic effects of the moving mass on the output characteristics are studied. It can be noted that the moving mass can improve the voltage output of the bridge type energy harvester by changing the resonant frequency of the bridge-type piezoelectric energy harvester and impacting the piezoelectric beam. The proposed vibration energy collection device can adaptively tune the resonant frequency and has practical value in engineering.
机译:环境中有丰富的振动能量。利用压电能量收割机到电力超低功耗无线传感器已成为近年来的热门话题。大多数压电能量收割机仅在一个谐振频率下具有令人满意的输出,而一旦外部激励频率偏离谐振频率,电压输出将显着下降。因此,本文提出了一种桥形压电能量收割机,用于拓宽能量收集的频带,并且收割机可以自适应地调节系统的固有频率以匹配外部激励。基于二维非线性Euler-Bernoulli光束假设和汉密尔顿原理,建立了非线性能量收集系统的分布式参数动态模型。通过使用变形操作员和非潜能化,我们得出了无量纲机电耦合方程。利用谐波平衡方法,推导了用于计算电压幅度和平均功率的近似方程。然后,通过考虑激发频率,激励幅度,质量位置和负载对桥式压电能量收割机的输出性能的影响,模型进行了数量解决和分析。最后,进行各种综合实验以验证模拟结果,研究了移动质量对输出特性的动态效应。可以注意到,运动质量可以通过改变桥式压电能量收割机的谐振频率并影响压电束来改善桥式能量收割机的电压输出。所提出的振动能量收集装置可以自适应地调整谐振频率并具有工程中的实用价值。

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