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Investigation of direct current power delivery from nonlinear vibration energy harvesters under combined harmonic and stochastic excitations

机译:谐波和随机激励联合作用下非线性振动能量采集器的直流功率输出研究

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Leveraging smooth nonlinearities in vibration energy harvesters has been shown to improve the potential for kinetic energy capture from the environment as a transduced, alternating flow of electrical current. While researchers have closely examined the direct current power delivery performance of linear energy harvesters, there is a clear need to quantify the direct current power provided by nonlinear harvester platforms, in particular those platforms having bistable nonlinearities that are shown to have advantages over other smooth nonlinearities. In addition, because real world excitations are neither purely harmonic nor purely stochastic, the influences of an arbitrary combination of such excitation mechanisms on power delivery must be uncovered. To bring needed light to these roles and opportunities for nonlinear energy harvesters to provide direct current electrical power for numerous applications, this research formulates a new analytical approach to characterize simultaneous harmonic and stochastic mechanical and electrical responses of nonlinear harvester platforms subjected to realistic base excitation. Based on the outcomes of analytical, numerical, and experimental studies, it is found that additive stochastic excitation may result in direct current power enhancement via perturbation from a low amplitude state particularly at low frequencies or reduce the direct current power by preventing persistent snap-through response often at higher frequencies. When the noise standard deviation is greater than the harmonic amplitude by approximately two times, the advantages to direct current power generation are more often realized.
机译:已经证明,利用振动能量收集器中的平滑非线性可以提高从环境中捕获的动能的能量,从而将其转换为交流电流。尽管研究人员已经仔细研究了线性能量采集器的直流电输送性能,但显然需要对非线性采集器平台提供的直流电进行量化,特别是那些具有双稳态非线性的平台,这些平台已证明比其他平滑非线性更具有优势。另外,由于现实世界中的激励既不是纯粹的谐波也不是纯粹的随机性,因此必须揭露这种激励机制的任意组合对功率传输的影响。为了给非线性能量采集器提供这些作用和机会,以为众多应用提供直流电,本研究提出了一种新的分析方法,以表征非线性采集器平台在实际基础激励下的同时谐波和随机机械和电响应。根据分析,数值和实验研究的结果,发现加性随机激励可能会通过扰动低振幅状态(特别是在低频情况下)而导致直流功率增强,或者通过防止持续的快速击穿来降低直流功率通常在较高的频率下响应。当噪声标准偏差比谐波幅度大两倍左右时,通常会产生直流发电的优点。

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