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Theoretical modeling, simulation and experimental study of hybrid piezoelectric and electromagnetic energy harvester

机译:压电和电磁混合能量采集器的理论建模,仿真和实验研究

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In this paper, performances of vibration energy harvester combined piezoelectric (PE) and electromagnetic (EM) mechanism are studied by theoretical analysis, simulation and experimental test. For the designed harvester, electromechanical coupling modeling is established, and expressions of vibration response, output voltage, current and power are derived. Then, performances of the harvester are simulated and tested; moreover, the power charging rechargeable battery is realized through designed energy storage circuit. By the results, it’s found that compared with piezoelectric-only and electromagnetic-only energy harvester, the hybrid energy harvester can enhance the output power and harvesting efficiency; furthermore, at the harmonic excitation, output power of harvester linearly increases with acceleration amplitude increasing; while it enhances with acceleration spectral density increasing at the random excitation. In addition, the bigger coupling strength, the bigger output power is, and there is the optimal load resistance to make the harvester output the maximal power.
机译:通过理论分析,仿真和实验测试,研究了压电(PE)和电磁(EM)机构相结合的振动能量采集器的性能。对于设计的收割机,建立了机电耦合模型,并得出了振动响应,输出电压,电流和功率的表达式。然后,模拟并测试收割机的性能;此外,通过设计的储能电路来实现可充电充电电池。结果发现,与仅使用压电和仅使用电磁的能量收集器相比,混合能量收集器可以提高输出功率和收集效率;此外,在谐波激励下,收割机的输出功率随加速度幅度的增加而线性增加。而随着随机激发时加速度谱密度的增加而增强。另外,耦合强度越大,输出功率越大,并且存在最佳的负载电阻,使收割机输出最大功率。

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