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Performance measures for single-degree-of-freedom energy harvesters under stochastic excitation

机译:随机激励下单自由度能量采集器的性能指标

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We develop performance criteria for the objective comparison of different classes of single-degree-of-freedom oscillators under stochastic excitation. For each family of oscillators, these objective criteria take into account the maximum possible energy harvested for a given response level, which is a quantity that is directly connected to the size of the harvesting configuration. We prove that the derived criteria are invariant with respect to magnitude or temporal rescaling of the input spectrum and they depend only on the relative distribution of energy across different harmonics of the excitation. We then compare three different classes of linear and nonlinear oscillators and using stochastic analysis methods we illustrate that in all cases of excitation spectra (monochromatic, broadband, white-noise) the optimal performance of all designs cannot exceed the performance of the linear design. Subsequently, we study the robustness of this optimal performance to small perturbations of the input spectrum and illustrate the advantages of nonlinear designs relative to linear ones.
机译:我们为随机激励下不同类别的单自由度振荡器的客观比较制定了性能标准。对于每个振荡器系列,这些客观标准都考虑了在给定响应级别下收集的最大可能能量,该能量直接与收集配置的大小相关。我们证明,导出的准则相对于输入频谱的幅度或时间重新定标是不变的,并且它们仅取决于激发的不同谐波之间能量的相对分布。然后,我们比较了三种不同类型的线性和非线性振荡器,并使用随机分析方法说明了在所有激发光谱(单色,宽带,白噪声)的情况下,所有设计的最佳性能都不能超过线性设计的性能。随后,我们研究了这种最佳性能对输入频谱的微小扰动的鲁棒性,并说明了非线性设计相对于线性设计的优势。

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