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Optimization study of a piezoelectric bistable generator with doubled voltage frequency using harmonic balance method

机译:谐波平衡法优化双电压频率压电双稳态发电机的研究

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摘要

Bistable generator for vibration energy harvesting is one of the most promising solutions to reach practically enhanced performance. Due to the buckled-spring-mass-specific behavior, the deformation of the piezoelectric transducer is nonlinearly dependent on the displacement, especially in the inter-well motion case. An analytical model is developed using harmonic balance analysis for the buckled-spring-mass generator architecture. Contrary to the usual method, a special doubled frequency voltage solution in the inter-well motion case is assumed in harmonic balance analysis to obtain an accurate predictive model, which is validated by experimental results. The influence of five critical parameters on the performance is thoroughly discussed. Design rules are then deduced: low damping ratio, properly high coupling level, matched load, optimal buckling level, and low characteristic frequency are required to get optimal performance in the inter-well motion case. Besides, we show some interesting results about the parameter optimization study.
机译:用于振动能量收集的双稳态发电机是实现实际增强性能的最有希望的解决方案之一。由于弯曲弹簧质量的特定行为,压电换能器的变形非线性地取决于位移,尤其是在井间运动情况下。使用屈曲弹簧质量发生器架构的谐波平衡分析开发了一个分析模型。与通常的方法相反,在谐波平衡分析中采用井间运动情况下的特殊双频电压解决方案,以获得准确的预测模型,并通过实验结果进行了验证。彻底讨论了五个关键参数对性能的影响。然后推导出设计规则:要求低阻尼比,适当高的耦合水平,匹配的负载,最佳的屈曲水平和较低的特征频率,以在井间运动情况下获得最佳性能。此外,我们展示了一些有关参数优化研究的有趣结果。

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