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Dual-Functional Energy-Harvesting and Vibration Control: Electromagnetic Resonant Shunt Series Tuned Mass Dampers

机译:双重功能的能量收集和振动控制:电磁谐振分流系列调谐质量阻尼器

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摘要

This paper proposes a novel retrofittable approach for dual-functional energy-harvesting and robust vibration control by integrating the tuned mass damper (TMD) and electromagnetic shunted resonant damping. The viscous dissipative element between the TMD and primary system is replaced by an electromagnetic transducer shunted with a resonant RLC circuit. An efficient gradient based numeric method is presented for the parameter optimization in the control framework for vibration suppression and energy harvesting. A case study is performed based on the Taipei 101 TMD. It is found that by tuning the TMD resonance and circuit resonance close to that of the primary structure, the electromagnetic resonant-shunt TMD achieves the enhanced effectiveness and robustness of double-mass series TMDs, without suffering from the significantly amplified motion stroke. It is also observed that the parameters and performances optimized for vibration suppression are close to those optimized for energy harvesting, and the performance is not sensitive to the resistance of the charging circuit or electrical load.
机译:本文通过将调谐质量阻尼器(TMD)和电磁分流谐振阻尼相集成,提出了一种用于双重功能能量收集和鲁棒振动控制的新型可改装方法。在TMD和主系统之间的粘性耗散元件被电磁谐振传感器代替,该电磁传感器与谐振RLC电路并联。提出了一种有效的基于梯度的数值方法,用于控制框架中用于振动抑制和能量收集的参数优化。案例研究基于台北101 TMD。可以发现,通过将TMD谐振和电路谐振调整到接近基本结构的谐振频率,电磁谐振分流TMD可以获得双质量系列TMD的增强的有效性和鲁棒性,而不会遭受明显放大的运动行程。还可以观察到,为抑制振动而优化的参数和性能与为能量收集而优化的参数和性能接近,并且性能对充电电路的电阻或电负载不敏感。

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