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Enhanced piezoelectric energy harvester performance using magnetic force and thermal energy

机译:使用磁力和热能增强压电能量收割机性能

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摘要

One possible approach of improving the performance of energy harvesters is to use energy harvester with an external magnetic force to create a nonlinear coupling system. In this work, we report experimental results of a single piezoelectric cantilever beam (PCB) with tip mass or conventional piezoelectric energy harvester (CPEH), and the effect of applying an external magnetic force. The output voltage and power at optimal resistance was 7.62V and 0.62mW, respectively, at the resonance frequency of approximately 11Hz of a CPEH. Also, the output voltage and average power at optimal resistance was 8.56V and 0.44mW, respectively, at resonance frequency of 7Hz of a PCB with fixed opposing magnet. Furthermore, the output voltage and average power at optimal resistance was 13.31V and 1.77mW, respectively, at resonance frequency of 11Hz of a PCB with opposing magnet attached at a second cantilever. In addition, comparison between the experimental results of all different configurations showed a reasonable enhancement of performance of energy harvester when an external magnetic force added over the main PCB. Finally, the performance of a multisource energy harvester with magnetic, thermal and mechanical sources is also presented in this study. In this case, it is demonstrated that increase in output voltage with temperature gradient under effect of magnetic force; the results of 2(nd) and 3(rd) model showed 44% and 99% enhancement of its original output voltage value at 1.2 degrees C and 2.7 degrees C temperature difference, respectively.
机译:提高能量收割机性能的一种可能的方法是利用具有外部磁力的能量收割机来产生非线性耦合系统。在这项工作中,我们报告了具有尖端质量或传统压电能量收割机(CPEH)的单个压电悬臂梁(PCB)的实验结果,以及施加外部磁力的效果。最佳电阻的输出电压和功率分别为7.62V和0.62MW,分别以约11Hz的CPEH的共振频率分别为7.62V和0.62MW。此外,在具有固定相对磁体的PCB的7Hz的共振频率下,最佳电阻的输出电压和平均功率分别为8.56V和0.44mW。此外,在最佳电阻下的输出电压和平均功率分别为13.31V和1.77mW,分别以11Hz的PCB的共振频率,其中相对磁体连接在第二悬臂上。此外,当在主PCB上添加的外部磁力时,所有不同配置的实验结果之间的比较显示了能量收割机的性能的合理增强。最后,本研究还提出了具有磁,热和机械来源的多源能量收割机的性能。在这种情况下,证明了磁力效果的温度梯度的输出电压增加; 2(ND)和3(RD)模型的结果分别在1.2摄氏度和2.7摄氏度下的原始输出电压值提高44%和99%。

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