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Mechanical and energy-harvesting model for electromagnetic inertial mass dampers

机译:电磁惯性质量阻尼器的机械和能量收集模型

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摘要

Recently, a novel inerter-based damper termed electromagnetic inertial mass damper (EIMD) that is capable of generating a large inertance and providing a controllable electromagnetic (EM) damping has been used as an energy dissipation device for seismic response control. Structural vibration energy induced by external loading is converted into electricity via the EIMD, for being dissipated and harvested. In this paper, the EIMD is proposed for simultaneous vibration mitigation and energy harvesting for the first time. A new mechanical model is proposed to predict the nonlinear behavior of the EIMD, and a linearized model is subsequently deduced based on the equal energy dissipation rule. In addition, an energy-harvesting model is presented to predict the output power and energy harvesting efficiency of the EIMD. To maximize the efficiency of the EIMD, this paper derives the corresponding optimal load resistance that can serve as the design criteria for an energy harvesting circuit (EHC). The proposed models are validated by the dynamic test of a prototype EIMD using harmonic excitation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:近来,一种新型的基于惯性的阻尼器称为电磁惯性质量阻尼器(EIMD),其能够产生大的惯性并提供可控制的电磁(EM)阻尼,已被用作地震响应控制的能量消散装置。由外部载荷引起的结构振动能通过EIMD转换为电能,以进行耗散和收集。在本文中,EIMD首次被提出用于同时减振和能量收集。提出了一种新的力学模型来预测EIMD的非线性行为,然后根据等能量耗散规则推导了线性化模型。此外,提出了一种能量收集模型来预测EIMD的输出功率和能量收集效率。为了最大程度地提高EIMD的效率,本文得出了相应的最佳负载电阻,可以将其用作能量收集电路(EHC)的设计标准。通过使用谐波激励对EIMD原型进行动态测试,验证了所提出的模型。 (C)2018 Elsevier Ltd.保留所有权利。

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