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Improving energy harvesting from impulsive excitations by a nonlinear tunable bistable energy harvester

机译:通过非线性可调谐双稳态能量收割机从冲动激发中提高能量收集

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摘要

This paper proposes a novel prototype of tunable bistable energy harvester (TBEH) coupled to a grounded and weakly damped linear primary structure. Based on buckling beam theory and generalized Hamiltonian principle, the equivalent mathematical model of the proposed TBEH system is presented and numerically simulated. A thorough sensitivity analysis concerning the buckled factor, the mass ratio, magnitude of impulse and the impulse period is studied to provide design insights for dynamic optimization of the TBEH system excited by varying impulsive excitations. The influences of a single impulse and repeated impulses on the vibration suppression and energy harvesting performance of TBEH system are investigated, respectively. Furthermore, the dynamics of the primary structure and TBEH and percentage of transient total energy in the TBEH are presented. The results show that maximizing measures of vibration energy absorption and harvesting can be optimized by tuning the sensitive parameters of the TBEH system. Compared with the pure cubic case, the tunable buckled TBEH shows remarkable advances in broadband vibration absorption and fast energy transfer. Finally, the confirmatory prototype experiment is conducted to validate the theoretical results. The measured experimental results are in good agreements with the theoretical analysis. The proposed TBEH with excellent energy capture and conversion is a potential alternative for powering miniature wireless sensor networks.
机译:本文提出了一种新颖的可调谐抗体能量收割机(TBEH)原型,耦合到接地和弱阻尼的线性初级结构。基于屈曲光束理论和广义Hamiltonian原理,提出和数值模拟了所提出的TBEH系统的等同数学模型。研究了关于屈曲因子,质量比,脉冲幅度和脉冲时期的彻底敏感性分析,以提供通过改变冲动激励激发的TBEH系统的动态优化设计见解。研究了单次脉冲和重复脉冲对TBEH系统的振动抑制和能量采伐性能的影响。此外,提出了TBEH中初级结构和TBEH的动态和TBEH和TBEH中的瞬态总能量百分比。结果表明,通过调整TBEH系统的敏感参数,可以通过调整TBEH系统的敏感参数来优化振动能量吸收和收获度的最大化测量。与纯立方箱相比,可调谐弯曲的TBEH在宽带振动吸收和快速传递中显示出显着的进展。最后,进行了确认的原型实验以验证理论结果。测量的实验结果与理论分析良好。所提出的TBEH具有出色的能量捕获和转换是一种供电微型无线传感器网络的潜在替代方案。

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