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The role of coupling strength in the performance of electrodynamic vibrational energy harvesters

机译:耦合强度在电动振动能量采集器性能中的作用

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This paper explores the role of a key dimensionless design parameter, denoted 'coupling strength', that governs the power generation performance of electrodynamic (electromagnetic) vibrational energy harvesters. The importance of coupling strength - and not just the electrodynamic transduction coefficient - on the output power and efficiency of the vibration energy harvesting device is presented analytically using a standard electromechanical model and validated using experimental results. It is shown that, up to a certain point, increasing the coupling strength of the harvester substantially increases the output power, resulting in improved electrodynamic coupling effectiveness and device efficiency. An electrodynamic harvester is designed such that the coupling strength can be varied through manual adjustments without altering the input vibration characteristics. Experimentally, the harvester is tested at a constant input acceleration amplitude of 0.74 m s-2 at the device natural frequency of 28.1 Hz. By increasing the coupling strength of the device from 2.6 to 49.2, the output power increased from 0.64 to 1.06 mW. The corresponding electrodynamic coupling effectiveness increased from 0.53 to 0.92, and the mechanical-to-electrical device efficiency increased from 21% to 45.3%.
机译:本文探讨了关键的无量纲设计参数(称为“耦合强度”)的作用,该参数控制着电动(电磁)振动能量收集器的发电性能。使用标准的机电模型分析性地提出了耦合强度(而不仅仅是电动力传递系数)对振动能量采集装置的输出功率和效率的重要性,并通过实验结果进行了验证。结果表明,在一定程度上,提高收割机的耦合强度会实质上提高输出功率,从而提高电动耦合效率和设备效率。电动收割机的设计使其可以通过手动调节来改变耦合强度,而不会改变输入振动特性。在实验中,以28.1 Hz的设备固有频率在0.74 m s-2的恒定输入加速度振幅下测试收割机。通过将设备的耦合强度从2.6增加到49.2,输出功率从0.64增加到1.06 mW。相应的电动力耦合效率从0.53提高到0.92,而机电设备的效率从21%增加到45.3%。

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