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MULTIFUNCTIONAL ENERGY HARVESTING LOCALLY RESONANT METASTRUCTURES

机译:多功能能量收集局部共振结构

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Vibration-based energy harvesting is a growing field for generating low-power electricity to use in wireless electronic devices, such as the sensor networks used in structural health monitoring applications. Locally resonant metastructures, which are structures that comprise locally resonant metamaterial components, enable bandgap formation at wavelengths much longer than the lattice size, for critical applications such as low-frequency vibration attenuation in flexible structures. This work aims to bridge the domains of energy harvesting and locally resonant metamaterials to form multifunctional structures that exhibit both low-power electricity generation and vibration attenuation capabilities. A fully coupled electromechanical modeling framework is developed for two characteristic systems and their modal analysis is presented. Simulations are performed to explore the vibration and electrical power frequency response maps for varying electrical load resistance, and optimal loading conditions are presented. Case studies are presented to understand the interaction of bandgap formation and energy harvesting capabilities of this new class of multifunctional energy-harvesting locally resonant metastructures. It is shown that useful energy can be harvested from the locally resonant metastruc-ture without significantly diminishing their dramatic vibration attenuation in the locally resonant bandgap. Thus, by integrating energy harvesters into a locally resonant metastructure, there is new potential for multifunctional self-powering or self-sensing locally resonant metastructures.
机译:基于振动的能量收集是一个不断发展的领域,用于产生低功率电能以用于无线电子设备,例如结构健康监测应用中使用的传感器网络。对于包括柔性结构中的低频振动衰减在内的关键应用,局部谐振元结构是包含局部谐振超材料成分的结构,能够在比晶格尺寸长得多的波长处形成带隙。这项工作旨在桥接能量收集和局部共振超材料的领域,以形成同时具有低功率发电和振动衰减功能的多功能结构。为两个特征系统开发了一个完全耦合的机电建模框架,并对其进行了模态分析。进行了仿真,以探索变化的电气负载电阻的振动和电源频率响应图,并提出了最佳的负载条件。案例研究被提出来理解带隙形成和这种新型的多功能能量收集局部共振元结构的能量收集能力之间的相互作用。结果表明,可以从局部共振的元结构中收集有用的能量,而不会显着减小它们在局部共振带隙中的剧烈振动衰减。因此,通过将能量收集器集成到局部共振的元结构中,对于多功能自供电或自感应的局部共振的元结构具有新的潜力。

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