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Topology Optimization of Miniaturized Piezoelectric Energy Harvester

机译:小型化压电能源收割机的拓扑优化

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In this contribution, we perform topology optimization on the mechanical structure of the multi-resonant folded beam energy harvester. The optimization goal is to minimize the spacing between its first two resonance frequencies and create a wider usable frequency range for energy harvesting. Two different optimizations have been performed. First optimization has successfully reduced the spacing to 2 Hz. For the second optimization, we excluded rectangular surface areas from the optimization, dedicated for commercial piezoelectric patches. The additional constraint has led to a larger frequency spacing compared to the initial optimization, 7 Hz, however this result is still a significant improvement over the starting geometry. Piezoelectricity model and comparison with existing parameter optimized designs will be included in the upcoming publication.
机译:在这一贡献中,我们对多谐振折叠光束能量收割机的机械结构进行拓扑优化。 优化目标是最小化其前两个共振频率之间的间距,并为能量收集创造更广泛的可用频率范围。 已经进行了两种不同的优化。 第一优化成功将间距降低到2 Hz。 对于第二种优化,我们排除了优化的矩形表面区域,专用于商业压电贴片。 与初始优化相比,额外约束导致较大的频率间距,然而,该结果仍然是对起始几何形状的显着改进。 压电模型和与现有参数优化设计的比较将包含在即将到来的出版物中。

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