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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >A validated simulation of energy harvesting with piezoelectric cantilever beams on a vehicle suspension using Bond Graph approach
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A validated simulation of energy harvesting with piezoelectric cantilever beams on a vehicle suspension using Bond Graph approach

机译:用粘合图方法对车辆悬架上压电悬臂梁的能量收集验证模拟

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摘要

Nowadays, there is a combine effect of piezoelectric material performances and energy harvesting management strategy increase. As the same time, the energy consumption of electrical components and circuits decrease. Thus, this leads to a growing interest in recovering low energy level with piezoelectric cantilever beam in the suspensions of an automotive vehicle to perform predictive maintaining operations for example. For this purpose, a Bond Graph model of suspension with an embedded piezoelectric beam has been proposed since it gives the keys to find an optimal configuration for the energy harvester. The Bond Graph language is well adapted to translate multiphysics exchange of energy and power from mechanical to electrical conversion. In order to validate simulation results, a prototype of piezoelectric energy harvester has been built and tested in a laboratory environment. Furthermore, this study has been supplemented by measurements performed on a road and simulations are in good keeping with these proposed experimental tests. In view of an energy balance, small power but with a long duration harvesting has been obtained. Therefore, energy harvester may be interesting for a punctual use with a large period of electrical loading.
机译:如今,有压电材料性能和能量收集管理策略增加的相结合效应。同时,电气部件和电路的能量消耗减小。因此,这导致在汽车车辆的悬架中利用压电悬臂梁恢复低能量水平的兴趣越来越感兴趣以执行预测性维持操作。为此目的,已经提出了一种具有嵌入式压电束的悬架键曲线图模型,因为它给出了键找到了能量收割机的最佳配置。键盘图语言很适合,可将多体性交换和电力从机械转换为电气转换。为了验证仿真结果,在实验室环境中建立和测试了压电能量收割机的原型。此外,该研究已经通过对道路进行的测量来补充,并且模拟与这些提出的实验测试保持良好。鉴于能量平衡,已经获得了小功率,但持续时间长。因此,能源收割机可能有趣的是与大型电荷的准时使用。

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