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Performance Evaluation of Multi-tier Energy Harvesters Using Macro-fiber Composite Patches

机译:使用宏观纤维复合材料补丁的多层能量收集器的性能评估

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This study presents the performance evaluation of a vibration-based energy harvester using macro-fiber composite (MFC) elements, which can harvest power from environmental or ambient vibration and shock. An innovative multi-tier energy harvester (MTEH), comprised of a small number of vibrating beam elements with same fundamental frequencies, is developed in this study to overcome the harvested power limitations of single-tier energy harvesters (STEHs) with only a single vibrating beam element. First, the governing equations of motion of an MTEH were theoretically obtained for series and parallel connections of pairs of MFC patches on each tier surface. Based on the theoretical model, a vibration-based MTEH, having three tiers with MFC patches adhered to the bottom and top of each tier surface, was designed and fabricated. MTEH performance, which included generated voltage, current, and power, was experimentally and theoretically evaluated in the frequency domain and compared with that of a similar STEH.
机译:这项研究提出了一种基于振动的能量收集器的性能评估,该能量收集器使用了宏纤维复合材料(MFC)元素,可以从环境或周围的振动和冲击中获取能量。本研究开发了一种创新的多层能量收集器(MTEH),该收集器由少量具有相同基频的振动梁元件组成,以克服仅一次振动的单层能量收集器(STEH)的收集功率限制梁单元。首先,理论上针对每层表面上的MFC贴片对的串联和并联连接,获得了MTEH的运动控制方程。基于该理论模型,设计并制造了基于振动的MTEH,该结构具有三层,每层表面的底部和顶部均粘附有MFC贴片。 MTEH性能(包括产生的电压,电流和功率)在频域上进行了实验和理论评估,并与类似的STEH进行了比较。

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