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Characterization of Real-world Vibration Sources with a View Towards Optimal Energy Harvesting Architectures

机译:真实世界振动来源的特征,以最佳的能量收集架构

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A tremendous amount of research has been performed on the design and analysis of vibration energy harvester architectures with the goal of optimizing power output; most studies assume idealized input vibrations without paying much attention to whether such idealizations are broadly representative of real sources. These "idealized input signals" are typically derived from the expected nature of the vibrations produced from a given source. Little work has been done on corroborating these expectations by virtue of compiling a comprehensive list of vibration signals organized by detailed classifications. Vibration data representing 333 signals were collected from the NiPS Laboratory "Real Vibration" database, processed, and categorized according to the source of the signal (e.g. animal, machine, etc.), the number of dominant frequencies, the nature of the dominant frequencies (e.g. stationary, band-limited noise, etc.), and other metrics. By categorizing signals in this way, the set of idealized vibration inputs commonly assumed for harvester input can be corroborated and refined, and heretofore overlooked vibration input types have motivation for investigation. An initial qualitative analysis of vibration signals has been undertaken with the goal of determining how often a standard linear oscillator based harvester is likely the optimal architecture, and how often a nonlinear harvester with a cubic stiffness function might provide improvement. Although preliminary, the analysis indicates that in at least 23% of cases, a linear harvester is likely optimal and in no more than 53% of cases would a nonlinear cubic stiffness based harvester provide improvement.
机译:研究了大量已经在设计和振动能量收集器架构的分析与优化功率输出的目标已经完成;大多数研究没有太注意这样的理想化是否具有广泛代表性的真正来源假设理想化的输入振动。这些“理想化的输入信号”通常是由来自给定源所产生的振动的预期性质的。小工作就凭借编译通过详细的分类组织的振动信号的完整列表的佐证这些预期已经完成。表示333点的信号的振动数据从该压区实验室“真正振动”数据库中收集,处理和分类根据信号的来源(例如动物,机器等),主频率的数量,主频率的性质(例如固定的,带限噪声等),和其他指标。通过这样的分类信号,该组常用假设收割机输入理想化的振动输入可以佐证和完善,以及此前被忽视的振动输入类型有调查动机。振动信号的初始质量分析已经进行与确定标准线性振荡器基于收割机是如何经常可能是最佳的架构,以及如何经常非线性收割机具有立方刚度功能可能会提供改进的目标。尽管初步的分析表明,在箱子至少23%,直链收割机是可能的最佳和在箱子不超过53%的人会基于立方非线性刚度收割机提供改进。

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