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Analytical modeling of orthogonal spiral structures

机译:正交螺旋结构的解析模型

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This paper presents the analytical modeling of orthogonal spiral structures (OSS), a promising option for small-scale energy harvesting applications. This unique multi-beam structure is analyzed using a distributed parameter approach with Euler-Bernoulli assumptions. First, an aluminum substrate is evaluated to determine if the proposed design can be used to capture vibration energy in the desired frequency range using a twelve beam OSS. Finite element calculations are used to validate the analytical model. This model is then modified to include the electromechanical effects of a piezoelectric layer added to the aluminum substrate. Lastly, the effects of the beam width and the number of beams is analyzed for a particular surface area of the OSS. Results show that increasing the number of beams causes a reduction in the first natural frequency. From those results, it is possible to conclude that OSS can be used as an alternative to current energy harvesting systems for MEMS applications, allowing the capture of environmental energy in the frequency range of common mechanical systems.
机译:本文介绍了正交螺旋结构(OSS)的分析模型,这是小规模能量收集应用的一个有前途的选择。使用具有Euler-Bernoulli假设的分布参数方法来分析这种独特的多光束结构。首先,对铝基板进行评估,以确定所提出的设计是否可用于使用十二束OSS捕获所需频率范围内的振动能量。有限元计算用于验证分析模型。然后对该模型进行修改,以包括添加到铝基板上的压电层的机电效应。最后,针对OSS的特定表面积分析光束宽度和光束数量的影响。结果表明,增加波束数量会导致第一固有频率降低。从这些结果可以得出结论,OSS可以用作MEMS应用中当前能量收集系统的替代品,从而可以在常见机械系统的频率范围内捕获环境能量。

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