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A multi-directional multi-stable device: Modeling, experiment verification and applications

机译:多向多稳定设备:建模,实验验证和应用

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Multi-stable vibration energy harvester based on spring-mass system has received widespread attention from many researchers, because the spring-mass multi-stable system has the advantages of low natural frequency, simple structure and high output power. This work considers such a energy harvesting system, but with the additional novelty of using the link mechanism to improve the bistable smooth and discontinuous (SD) oscillator, and a multi-directional multi-stable device (MMD) is proposed. Equilibrium analysis demonstrates the multi-stable mechanism and the bifurcation conditions for the unperturbed system. While for the perturbed system, the Extended Averaging Method is carried out to demonstrate the multi-stable behaviors, transitions between different potential wells, and their large amplitude inter-well motions. The experimental results are compared to theoretical results. Both theoretical and experimental data suggest that the MMD produces a large amplitude response at ultra-low frequencies, enabling motion throughout all equilibrium positions. The designed prototype can be easily adopted for efficient energy harvesting from ultra-low frequency vibration sources.
机译:基于春细系统的多稳态振动能量收割机已经受到许多研究人员的广泛关注,因为泉群多稳定系统具有低固有频率,结构简单和高输出功率的优点。这项工作考虑了这种能量收集系统,但是利用使用链路机构来改善双稳态光滑和不连续(SD)振荡器的额外新颖性,以及多向多稳定装置(MMD)。平衡分析证明了多稳定的机制和不受干扰的系统的分叉条件。虽然对于扰动系统,执行延长的平均方法以展示多稳定的行为,不同潜在孔之间的转换,以及它们的大幅度阱间运动。将实验结果与理论结果进行比较。理论和实验数据均表明MMD在超低频率下产生大的振幅响应,使得在整个平衡位置的运动能够进行运动。可以轻松采用设计的原型,以便高效的能量收集来自超低频率振动源。

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