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Harvesting base vibration energy by a piezoelectric inverted beam with pendulum

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【作者】 潘家楠秦卫阳邓王蒸周红磊

【Author】 Jia-Nan Pan;Wei-Yang Qin;Wang-Zheng Deng;Hong-Lei Zhou;Department of Engineering Mechanics,Northwestern Polytechnical University;

【通讯作者】 秦卫阳;

【机构】 Department of Engineering Mechanics,Northwestern Polytechnical University

【摘要】 We proposed a two-degrees-of-freedom inverted piezoelectric beam with pendulum to promote the performance of vibration energy harvesting. This configuration is composed of an inverted elastic beam and a pendulum attached to its free end. The electromechanical equations governing the nonlinear system were derived. The harmonic balance method(HBM)is applied to solve the equation and the results prove that there exists a 1:3 super-harmonic resonance. The simulation results show that owing to the particular nonlinearity, there appears a special bending effect in the amplitude-frequency response, i.e., bending right for the first natural frequency and left for the second natural frequency, which is beneficial for harvesting vibration energy. The HBM results are verified by the entity simulations. Furthermore, over a relatively wide range of power spectral density, it could reach a dense jumping and give a dense high pulse voltage.

【Abstract】 We proposed a two-degrees-of-freedom inverted piezoelectric beam with pendulum to promote the performance of vibration energy harvesting. This configuration is composed of an inverted elastic beam and a pendulum attached to its free end. The electromechanical equations governing the nonlinear system were derived. The harmonic balance method(HBM)is applied to solve the equation and the results prove that there exists a 1:3 super-harmonic resonance. The simulation results show that owing to the particular nonlinearity, there appears a special bending effect in the amplitude-frequency response, i.e., bending right for the first natural frequency and left for the second natural frequency, which is beneficial for harvesting vibration energy. The HBM results are verified by the entity simulations. Furthermore, over a relatively wide range of power spectral density, it could reach a dense jumping and give a dense high pulse voltage.

【基金】 Project supported by the National Natural Science Foundation of China(Grant No.11672237)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2019年01期
  • 【分类号】O322
  • 【被引频次】3
  • 【下载频次】68
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