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Topology optimization of energy harvesting devices using piezoelectric materials

机译:使用压电材料的能量采集设备的拓扑优化

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Energy harvesting devices based on the piezoelectric effect that converts ambient energy to electric energy is a very attractive energy source for remote sensors and embedded devices. Although topology optimization has been applied to the design of piezoelectric transducers, the locations of piezoelectric materials are predefined and only the optimal layout of elastic materials is considered. In this paper, both elastic materials as well as piezoelectric materials are considered for the design of energy harvesting devices under the topology optimization formulation. The objective function for this study is to maximize the energy conversion factor. The sensitivities of both stored strain energy and electrical energy are derived by the adjoint method. Examples of energy harvesting devices are presented and discussed using the proposed method.
机译:基于压电效应的能量收集设备将周围的能量转换为电能,这对于远程传感器和嵌入式设备来说是非常有吸引力的能源。尽管拓扑优化已应用于压电换能器的设计,但压电材料的位置是预先定义的,并且仅考虑弹性材料的最佳布局。在本文中,在拓扑优化公式下,弹性材料和压电材料都被考虑用于能量收集装置的设计。这项研究的目标功能是使能量转换因子最大化。所存储的应变能和电能的灵敏度都是通过伴随方法得出的。使用提出的方法介绍和讨论了能量收集设备的示例。

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