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Optimal design of a unimorph piezoelectric cantilever devoted to energy harvesting to supply animal tracking devices

机译:专门用于能量收集的单压电晶片压电悬臂的优化设计,以提供动物跟踪设备

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This paper presents the mechanical structure optimization of a piezoelectric energy harvesters devoted to supply embedded animal tracking devices. The harvester mechanical structure being a bilayer unimorph piezoelectric cantilever is composed of two elements: a piezoelectric layer and a non-piezoelectric layer (i.e, active and passive layers). The suggestion of this paper is to find the optimal ratio between their two thicknesses in order to maximize the output recuperated voltage at the electrodes. For that, from the model that links the mechanical excitation moment and the output electrical charge, a gradient-based optimization is carried-out. Comparison with existing mechanical piezoelectric harvester structure is made and which clearly demonstrates that the proposed structure permits to gain up to five-times in terms of the output charge and a significant gain in terms of output electrical power for the same condition.
机译:本文介绍了专用于提供嵌入式动物跟踪设备的压电能量采集器的机械结构优化。收割机的机械结构是双层单压电晶片压电悬臂,由两个元素组成:压电层和非压电层(即有源层和无源层)。本文的建议是找到两个厚度之间的最佳比例,以使电极上的输出恢复能量最大化。为此,从链接机械激励力矩和输出电荷的模型中,进行了基于梯度的优化。与现有的机械压电收集器结构进行了比较,它清楚地表明,在相同条件下,所提出的结构允许在输出电荷方面获得多达五倍的收益,而在输出电功率方面获得显着的收益。

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