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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Energy Harvester Synthesis Via Coupled Linear-Bistable System With Multistable Dynamics
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Energy Harvester Synthesis Via Coupled Linear-Bistable System With Multistable Dynamics

机译:通过具有多稳态动力学的线性双稳态系统耦合能量收集器

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In this research we study the dynamics of a coupled linear oscillator-bistable energy harvester system. The method of harmonic balance and perturbation analysis are used to predict the existence and stability of the bistable device interwell vibration. The influences of important parameters on tailoring the coupled system response are investigated to determine strategies for improved energy harvesting performance. We demonstrate analytically that for excitation frequencies in a bandwidth less than the natural frequency of the uncoupled linear oscillator having net mass that is the combination of the bistable and linear bodies, the bistable harvester dynamics may be substantially intensified as compared to a single (individual) bistable harvester. In addition, the linear-bistable coupled system may introduce a stable out-of-phase dynamic around the natural frequency of the uncoupled linear oscillator, enhancing the performance of the harvester by providing a second interwell response not possible when using a single bistable harvester. Key analytical findings are confirmed through numerical simulations and experiments, validating the predicted trends and demonstrating the advantages of the coupled system for energy harvesting.
机译:在这项研究中,我们研究了耦合线性振荡器-双稳态能量收集器系统的动力学。采用谐波平衡和摄动分析的方法来预测双稳态装置井间振动的存在和稳定性。研究了重要参数对调整耦合系统响应的影响,以确定提高能量收集性能的策略。我们通过分析证明,对于带宽小于具有双稳态和线性物体组合的净质量的未耦合线性振荡器的固有频率的带宽中的激励频率,与单个(单个)相比,双稳态收割机的动力学可能会大大增强双稳态收割机。另外,线性双稳态耦合系统可以在未耦合线性振荡器的固有频率附近引入稳定的异相动态,从而通过提供使用单个双稳态采集器时不可能的第二井间响应来增强采集器的性能。通过数值模拟和实验确认了关键的分析结果,验证了预测的趋势并证明了耦合系统在能量收集方面的优势。

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