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Magnetoelastic Energy Harvester for Structural Health Monitoring Applications

机译:磁弹性能量采集器,用于结构健康监测应用

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Research presented in this paper focuses on the experimental and theoretical analysis of a compact, nonlinear, broadband energy harvesting device. Cantilevered structure zigzag beams have been shown to have natural frequencies orders of magnitudes lower than traditional cantilever beam geometries of the same size. Literature has also demonstrated that a cantilever beam harvester design combined with a magnetic field introduces nonlinearities in the response which can increase bandwidth of the device. Current energy harvester designs are relatively large in size, are most efficient at high frequencies, or only useful for narrowband linear operation. The proposed research introduces a zigzag geometry beam used in conjunction with a magnetic field to create a compact device capable of low frequency broadband energy harvesting. Experimental results are shown comparing both the linear and nonlinear energy harvesting capabilities of the zigzag structures. Experimental results are the focus of this paper, however, analytical expressions for the fundamental mode shape, natural frequency, and electromechanical coupling are presented for the linear lumped parameter system. A physics based magnetic force model for the nonlinear system is also proposed.
机译:本文提出的研究重点在于紧凑,非线性,宽带能量收集设备的实验和理论分析。悬臂结构之字形梁的固有频率已显示出比相同尺寸的传统悬臂梁几何形状低几个数量级。文献还表明,悬臂式束收集器设计与磁场相结合会在响应中引入非线性,从而增加设备的带宽。当前的能量收集器设计尺寸较大,在高频下效率最高,或仅用于窄带线性操作。拟议的研究引入了一种锯齿形的几何束,并与磁场结合使用,以创建一种能够进行低频宽带能量收集的紧凑型设备。实验结果表明,比较了之字形结构的线性和非线性能量收集能力。实验结果是本文的重点,但是,针对线性集总参数系统,给出了基本模式形状,固有频率和机电耦合的解析表达式。还提出了基于物理的非线性系统磁力模型。

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