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Modeling and experimental validation of levitating systems for energy harvesting applications

机译:用于能量收集应用的悬浮系统的建模和实验验证

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The diamagnetic levitation principle is used to design an innovative typology of suspension for energy harvesting devices applied to very low frequency vibrating environments. The static configuration of the magneto-structural coupling is investigated starting from the theory of magnetism and a discrete numerical model is finally developed. The experimental validation is provided with measurements conducted by dedicated samples with a diamagnetic proof mass levitating in a magnetic field generated by permanent magnets. The results presented in this work provide important indications to the designer of microsystems for energy harvesting and the modeling approach proposed represent a valid design tool for coupled systems.
机译:抗磁悬浮原理用于设计一种新颖的悬架类型,用于能量收集设备的悬架,应用于非常低频的振动环境。从磁性理论出发,研究了磁结构耦合的静态结构,并最终建立了离散数值模型。通过使用专用样品进行的测量验证,这些样品具有在永久磁铁产生的磁场中悬浮的抗磁证明质量。这项工作中提出的结果为微系统的设计人员提供了重要的能量收集指示,并且所提出的建模方法代表了耦合系统的有效设计工具。

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