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首页> 外文期刊>Journal of intelligent material systems and structures >Coupled optimization of tuned-mass energy harvesters accounting for host structure dynamics
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Coupled optimization of tuned-mass energy harvesters accounting for host structure dynamics

机译:耦合质量优化的能量收集器,考虑了主体结构的动力学

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A tuned-mass electromagnetic energy harvester mounted on a vibrating structure is studied here, accounting for the dynamic coupling between harvester and host structure. The latter is modeled as a modal mass-spring-dashpot system, whereas the harvester device is composed of an electromagnetic transducer and a tunable secondary mass-spring-dashpot system. A thorough analytical coupled optimization of the harvested power with respect to the harvester components is presented here. Closed-form design formulas are supplied for the optimal values of the electromagnetic damping coefficient and tuning frequency, as functions of the excitation frequency, mass ratio, and mechanical damping coefficients. The optimized parameters yield a wide effective harvesting bandwidth when proper values of the mass ratio and device mechanical damping are chosen. It is shown that neglecting in the design process the dynamic coupling between harvesting device and vibrating host structure, that is, treating the latter as a mere vibration source as generally assumed in the literature, leads to a significant degradation of the harvesting performance.
机译:本文研究了安装在振动结构上的调谐质量电磁能收集器,它考虑了收集器与主体结构之间的动态耦合。后者被建模为模态质量弹簧-阻尼系统,而收割机设备由电磁换能器和可调的次级质量弹簧-阻尼系统组成。此处针对收割机组件对收割功率进行了全面的分析耦合优化。针对励磁频率,质量比和机械阻尼系数的函数,提供了电磁阻尼系数和调谐频率的最优值的闭式设计公式。当选择合适的质量比和设备机械阻尼值时,优化的参数可产生宽广的有效收获带宽。结果表明,在设计过程中忽略了收割装置与振动主体结构之间的动态耦合,也就是说,如文献中一般假定的那样,将其视为单纯的振动源,会导致收割性能显着下降。

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