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Performance metric comparison study for non-magnetic bi-stable energy harvesters

机译:非磁性双稳态能量采集器性能指标比较研究

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Energy harvesting employing non-linear systems offers considerable advantages over linear systems given the broadband resonant response which is favorable for applications involving diverse input vibrations. In this respect, the rich dynamics of bi-stable systems present a promising means for harvesting vibrational energy from ambient sources. Harvesters deriving their bi-stability from thermally induced stresses as opposed to magnetic forces are receiving significant attention as it reduces the need for ancillary components and allows for bio-compatible constructions. However, the design of these bi-stable harvesters still requires further optimization to completely exploit the dynamic behavior of these systems. This study presents a comparison of the harvesting capabilities of non-magnetic, bi-stable composite laminates under variations in the design parameters as evaluated utilizing established power metrics. Energy output characteristics of two bi-stable composite laminate plates with a piezoelectric patch bonded on the top surface are experimentally investigated for variations in the thickness ratio and inertial mass positions for multiple load conditions. A particular design configuration is found to perform better over the entire range of testing conditions which include single and multiple frequency excitation, thus indicating that design optimization over the geometry of the harvester yields robust performance. The experimental analysis further highlights the need for appropriate design guidelines for optimization and holistic performance metrics to account for the range of operational conditions.
机译:鉴于宽带谐振响应,采用非线性系统的能量收集相对于线性系统具有明显的优势,这对于涉及多种输入振动的应用是有利的。在这方面,双稳态系统的丰富动力为从周围环境中收集振动能提供了一种有希望的手段。从热感应应力(而不是磁力)获得双稳定性的收割机受到了广泛的关注,因为它减少了对辅助部件的需求,并实现了生物相容性结构。但是,这些双稳态收割机的设计仍需要进一步优化,以完全利用这些系统的动态行为。这项研究提出了比较非磁性,双稳态复合材料层压板在利用已建立的功率指标​​进行评估的设计参数变化下的收割能力的比较。实验研究了两个双稳态复合层压板的顶面粘结有压电贴片的能量输出特性,以研究多种载荷条件下厚度比和惯性质量位置的变化。发现一种特定的设计配置在包括单频和多频激励的整个测试条件范围内表现更好,因此表明在收割机的几何结构上进行设计优化可获得稳定的性能。实验分析进一步强调,需要针对优化和整体性能指标制定适当的设计指南,以考虑操作条件的范围。

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