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A modified magnetic force model and experimental validation of a tri-stable piezoelectric energy harvester

机译:三稳态压电能量采集器的改进磁力模型和实验验证

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Nonlinear tri-stable piezoelectric energy harvesters with magnetic field coupling have attracted many researchers' interest in ambient vibration energy harvesting and conversion. In such a tri-stable piezoelectric energy harvester, the nonlinear magnetic force generated by the external magnetic field is mainly calculated by the equivalent magnetic dipole method. However, this method will give highly erroneous results when the magnetic separation distance is small. This study presents a modified magnetic force model to precisely calculate the nonlinear magnetic force exerted on the tip of the cantilever beam. Unlike the equivalent magnetic dipole method regarding the magnet as a point dipole at its body center, this model only considers the surface magnetization current of the left and right surfaces of the magnets and replaced them by the one of the center point dipoles on these associated surfaces. With this model, the nonlinear magnetic force, the potential energy, and the transition mechanism of the tri-stable piezoelectric energy harvester are numerically investigated. Experimental validations are consequently performed to testify the numerical results. Compared with the equivalent magnetic dipole method, the modified magnetic force model has a much higher accuracy to be more applicable for different magnetic separation distances, especially when the magnetic separation distance is small.
机译:具有磁场耦合的非线性三稳态压电能量收集器已经吸引了许多研究人员对环境振动能量收集和转换的兴趣。在这种三稳态压电能量收集器中,由外部磁场产生的非线性磁力主要通过等效磁偶极子方法来计算。但是,当磁分离距离较小时,此方法将给出高度错误的结果。这项研究提出了一种改进的磁力模型,可以精确计算施加在悬臂梁末端的非线性磁力。与等效磁偶极方法不同,该方法将磁体作为其体心的点偶极子,该模型仅考虑了磁体左右表面的表面磁化电流,并用这些相关表面上的中心点偶极子代替了它们。 。利用该模型,对三稳态压电能量采集器的非线性磁力,势能和跃迁机理进行了数值研究。因此,进行了实验验证以证明数值结果。与等效磁偶极子方法相比,改进的磁力模型具有更高的精度,可以更适用于不同的磁分离距离,尤其是在磁分离距离小的情况下。

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