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Novel tunable broadband piezoelectric harvesters for ultralow-frequency bridge vibration energy harvesting

机译:新型可调谐宽带压电收集器,用于超低频桥梁振动能量收集

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With a nonlinear X-shaped structure connected with piezoelectric harvesters through two types of special mounting configurations (horizontal and vertical cases), novel coupled vibration energy harvesting systems are purposely constructed and investigated for exploiting nonlinearity and structural coupling effect in vibration energy harvesting. Different from concentrating on a beam harvester itself in the literature (i.e. the beneficial nonlinearity comes from the beam itself), this study focuses on exploring the nonlinear benefits that the X-shaped structure could provide, together with structural coupling effect. The novelty lies in that the coupled X-structured harvesting systems have both the advantages of the existing simple cantilevered beam harvester (harvesting power only at around the natural frequency of the beam) and the spring-mass system supported beam harvester (harvesting energy only at around the natural frequency of the supporting spring-mass system). With the proposed X-structures, the effective operation bandwidth of traditional cantilever based harvesters can be greatly enlarged and also be extended to an ultralow frequency range. This is a very special feature of the proposed X-structure based harvesting systems compared with conventionally designed cantilevered harvesters or the spring-mass supported cantilevered harvesters. The proposed devices can be regarded as advantageous versions of the cantilever-based configurations for ultralow frequency range. In addition, the X-structured harvesters can achieve very tunable harvesting bandwidth (i.e. tuning the harvesting frequency of the first peak) by adjusting several structural parameters. The experiment tests demonstrate that the proposed harvesting devices hold potentials for traffic-induced bridge vibration energy harvesting, which can be used for powering the sensors for bridge health monitoring.
机译:通过将非线性X形结构通过两种特殊的安装结构(水平和垂直壳体)与压电收集器连接起来,专门构造和研究了新颖的耦合振动能量收集系统,以利用振动能量收集中的非线性和结构耦合效应。与在文献中专注于光束收集器本身不同(即有益的非线性来自于光束本身),本研究的重点是探索X形结构可以提供的非线性好处以及结构耦合效果。新颖之处在于,耦合的X结构收获系统既具有现有简单悬臂式束收集器(仅在束的固有频率附近收获功率)的优点,也具有弹簧质量系统支持的束收集器(仅在梁的固有频率处收获能量)的优点。支撑弹簧质量系统的固有频率)。借助提出的X结构,可以大大扩大传统的基于悬臂的收割机的有效操作带宽,并且可以将其扩展到超低频范围。与常规设计的悬臂式收割机或弹簧支撑的悬臂式收割机相比,这是基于X结构的收割系统的一个非常特殊的特征。所提出的设备可以被认为是用于超低频范围的基于悬臂的配置的有利版本。此外,X结构的收割机可以通过调整几个结构参数来实现非常可调的收割带宽(即,调整第一个峰的收割频率)。实验测试表明,所提出的采集设备具有交通诱发的桥梁振动能量采集的潜力,可将其用于为传感器提供能量以进行桥梁健康监测。

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