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首页> 外文期刊>Journal of Sound and Vibration >Diamagnetic levitation for nonlinear vibration energy harvesting: Theoretical modeling and analysis
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Diamagnetic levitation for nonlinear vibration energy harvesting: Theoretical modeling and analysis

机译:用于非线性振动能量收集的反磁悬浮:理论建模和分析

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摘要

This paper provides theoretical modeling and analysis of applying diamagnetic levitation for nonlinear vibration energy harvesting in detail by first identifying potential merits as well as limitations. Based on a magnetic dipole model, analytical analysis is conducted by providing simplified analytical expressions of restoring forces and electromagnetic damping which are then transformed into a hardening spring model and results in a Duffing equation with strong nonlinearity. In addition, constraints on physical geometry are discussed and derived in the view of practical energy harvester design. More importantly, the derivation and discussion extended to multi-well potential suggest that diamagnetic levitation may enable designing an energy harvester that subject to cross-well chaos with a compact volume and wideband responses. Without mechanical damping in any form, diamagnetic levitation may be considered as a promising mechanism for developing vibration energy harvesters with great performance, and the paper provides a technology push on the possibility.
机译:本文首先通过识别潜在的优点和局限性,详细介绍了将反磁悬浮应用于非线性振动能量收集的理论建模和分析。基于磁偶极子模型,通过提供恢复力和电磁阻尼的简化解析表达式进行分析,然后将其转换为硬化弹簧模型,并得出具有强非线性的Duffing方程。另外,从实际能量收集器设计的角度讨论并得出了对物理几何形状的限制。更重要的是,对多阱势的推导和讨论表明,反磁悬浮可以使能量收集器的设计受到交叉阱混沌的影响,并具有紧凑的体积和宽带响应。在没有任何形式的机械阻尼的情况下,反磁悬浮可以被认为是开发具有高性能的振动能量收集器的有希望的机制,并且本文提供了推动这种可能性的技术。

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