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On the Optimization of a Multimodal Electromagnetic Vibration Energy Harvester Using Mode Localization and Nonlinear Dynamics

机译:用模式定位和非线性动力学优化多模式电磁振动能量收割机的优化

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摘要

In this paper we study a generic model of a nonlinear quasiperiodic vibration energy harvester (VEH) based on electromagnetic transduction. The proposed device consists of multiple moving magnets guided by elastic beams and coupled by repulsive magnetic forces. A system of two degrees-of-freedom (DOFs) with tunable nonlinearity and mode localization is experimentally validated. The validated 2-DOFs harvester is optimized using a multiobjective optimization procedure to improve its harvested power and frequency bandwidth. An efficient criterion using the modal kinetic energy of the finite element model is proposed to quantify the energy localized in the structure perturbed zones. Afterward, this concept has been generalized to a 5-DOFs VEH with two perturbed DOFs oscillators and the optimal performances are derived using a multiobjective optimization. This proposed model enables a significant increase in the harvested power and frequency bandwidth by 101% and 79%, respectively, compared to that of the 2-DOFs device. Moreover, it has been shown that harvesting energy from two perturbed magnets among five provides almost the same amount of harvested energy and enhances the frequency bandwidth by 18% compared to those of the periodic system. Consequently, the harvester can be improved by reducing the transduction circuits number and the manufacturing cost.
机译:本文基于电磁转导的非线性QuaSiodic振动能量收割机(VAR)的一般模型研究。所提出的装置包括由弹性梁引导的多个移动磁铁并由排斥磁力连接。实验验证了具有可调非线性和模式本地化的两种自由度(DOF)的系统。使用多目标优化程序优化了验证的2-DOFS收割机,以改善其收获的功率和频率带宽。建议使用有限元模型的模态动能的有效标准来量化结构扰动区域中的能量。之后,该概念已经推广到具有两个扰动DOF振荡器的5-DOFS车辆,并且使用多目标优化导出最佳性能。与2-DOF装置的装置相比,该提出的模型分别使收获功率和频率带宽的显着增加101%和79%。此外,已经证明,与周期性系统相比,五种扰动磁体中的从两个扰动磁体中收集了几乎相同量的收获能量,并增强了18%的频率带宽。因此,通过降低转导电路数和制造成本,可以提高收割机。

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