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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Research on Output Characteristics of Double-Ended Fixed Beam Piezoelectric Energy Harvester Under Random Excitation
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Research on Output Characteristics of Double-Ended Fixed Beam Piezoelectric Energy Harvester Under Random Excitation

机译:随机励磁下双端固定梁压电能量收割机输出特性研究

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By use of the concept of impedance, this paper establishes a random energy harvester output model of double-ended fixed beam piezoelectric energy harvester under random White Gaussian noise excitation, which is based on the discussion of the output characteristics influenced by changing vibration beam shape and piezoelectric sheet length under random excitation, while improving piezoelectric structure of double-ended fixed beam piezoelectric energy harvester. It also deduces the output voltage, current and power of energy harvester with Fokker-Planck equation, which are verified by Monte Carlo simulation and experimental testing. It can be found that improving vibration beam shape can reduce resonant frequency and increase average output power of the system. The optimal value of piezoelectric sheet length can be different corresponding to different structures, which proves that double-ended fixed beam piezoelectric energy harvester under random White Gaussian noise excitation can achieve maximum output with optimal piezoelectric sheet length. In addition, in order to further improve the output performance of piezoelectric energy harvester under random excitation, it is necessary to increase the acceleration spectral density under random excitation and set an optimal value of the piezoelectric loading resistance, which is more suitable for energy harvester applied under random low-frequency environment.
机译:通过使用阻抗的概念,在随机白色高斯噪声激励下建立了双端固定梁压电能量收割机随机能量收割机输出模型,这是基于通过改变振动梁形状影响的输出特性的讨论在随机激励下的压电片长度,同时改善双端固定光束压电能量收割机的压电结构。它还用蒙特卡罗模拟和实验测试验证了与Fokker-Planck方程的能量收割机的输出电压,电流和功率。可以发现,提高振动梁形状可以降低谐振频率并增加系统的平均输出功率。压电片长度的最佳值可以与不同的结构不同,这证明了在随机白色高斯噪声激励下的双端固定光束压电能量收割机可以实现具有最佳压电片长度的最大输出。另外,为了进一步提高随机激励下压电能量收割机的输出性能,有必要在随机激励下提高加速谱密度,并设定压电负载电阻的最佳值,这更适合施加能量收割机在随机低频环境下。

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