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首页> 外文期刊>Journal of intelligent material systems and structures >On the advantage of a bistable energy harvesting oscillator under band-limited stochastic excitation
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On the advantage of a bistable energy harvesting oscillator under band-limited stochastic excitation

机译:带限随机激励下双稳态能量采集振荡器的优势

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摘要

Oscillation-based linear energy harvesters are often excited by random, band-limited, slowly varying forces. When the excitation bandwidth is limited such that natural frequencies of electromechanical energy harvester are not excited, linear devices lose their efficiency, and nonlinear structures with negative stiffness can be used to enhance the conversion efficiency by performing frequency up-conversion. It is shown here that nonlinear, bistable oscillators perform considerably better than their linear counterpart under band-limited excitation, in certain regions. This is contrary to commonly modeled, wideband, or white noise excitation, where nonlinear potential has no or little effect on the energy output. A sharp increase in performance is observed for band-limited random excitation along a well-defined region in the input-level and bandwidth plane. Having defined this region, the harvesting device can be adaptively tuned in order to keep the power output levels high. The results of simulated, partially analytical, and experimental studies are compared and analyzed to obtain cross-validation.
机译:基于振动的线性能量采集器通常会受到随机,带限,缓慢变化的力的激励。当激励带宽受到限制,以致于机电能量采集器的固有频率不被激励时,线性器件会失去效率,而具有负刚度的非线性结构可用于通过执行频率上变频来提高转换效率。此处显示,在某些区域中,非线性双稳态振荡器在带限激励下的性能远远优于线性双稳态振荡器。这与通常建模的宽带或白噪声激励相反,后者的非线性电势对能量输出没有影响或影响很小。沿着输入电平和带宽平面中明确定义的区域,对于有限带宽的随机激励,观察到性能急剧提高。定义了该区域后,可以对收割设备进行自适应调整,以保持较高的功率输出水平。对模拟,部分分析和实验研究的结果进行比较和分析以获得交叉验证。

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