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Broadening the Frequency Bandwidth of Piezoelectric Energy Harvesters Using Coupled Linear Resonators

机译:使用耦合线性谐振器拓宽压电能量采集器的频率带宽

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摘要

The desire to reduce power consumption of current integrated circuits has led design engineers to focus on harvesting energy from free ambient sources such as vibrations. The energy harvested this way can eliminate the need for battery replacement, particularly, in low-energy remote sensing and wireless devices. Currently, most vibration-based energy harvesters are designed as linear resonators, therefore, they have a narrow resonance frequency. The optimal performance of such harvesters is achieved only when their resonance frequency is matched with the ambient excitation. In practice, however, a slight shift of the excitation frequency will cause a dramatic reduction in their performance. In the majority of cases, the ambient vibrations are totally random with their energy distributed over a wide frequency spectrum. Thus, developing techniques to extend the bandwidth of vibration-based energy harvesters has become an important field of research in energy harvesting systems.This thesis first reviews the broadband vibration-based energy harvesting techniques currently known in some detail with regard to their merits and applicability under different circumstances. After that, the design, fabrication, modeling and characterization of three new piezoelectric-based energy harvesting mechanism, built typically for rotary motion applications, is discussed. A step-by-step procedure is followed in order to broaden the bandwidth of such energy harvesters by introducing a coupled spring-mass system attached to a PZT beam undergoing rotary motion. It is shown that the new strategies can indeed give rise to a wide-band frequency response making it possible to fine-tune their dynamical response. The numerical results are shown to be in good agreement with the experimental data as far as the frequency response is concerned.
机译:降低当前集成电路功耗的愿望促使设计工程师集中精力从自由的环境源(例如振动)中收集能量。以这种方式收集的能量可以消除更换电池的需求,尤其是在低能耗遥感和无线设备中。当前,大多数基于振动的能量收集器被设计为线性谐振器,因此,它们具有窄的谐振频率。这种收割机的最佳性能只有在其共振频率与环境激励相匹配时才能实现。然而,实际上,激励频率的微小变化将导致其性能急剧下降。在大多数情况下,环境振动是完全随机的,其能量分布在很宽的频谱上。因此,开发扩展基于振动的能量采集器带宽的技术已成为能量采集系统的重要研究领域。本文首先就目前基于宽带振动的能量采集技术的优缺点和适用性进行了较为详细的介绍。在不同的情况下。此后,讨论了三种通常用于旋转运动应用的基于压电的新型能量收集机构的设计,制造,建模和表征。为了通过引入连接到经历旋转运动的PZT梁的耦合弹簧质量系统来扩展此类能量收集器的带宽,遵循了分步过程。结果表明,新策略确实可以产生宽带频率响应,从而可以微调其动态响应。就频率响应而言,数值结果显示与实验数据非常吻合。

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    Sadeqi Soheil;

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  • 年度 2013
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