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Modeling of capacitor charging dynamics in an energy harvesting system considering accurate electromechanical coupling effects

机译:考虑精确机电耦合效应的能量收集系统中电容器充电动力学的建模

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This paper presents an iterative numerical method that accurately models an energy harvesting system charging a capacitor with piezoelectric patches. The constitutive relations of piezoelectric materials connected with an external charging circuit with a diode bridge and capacitors lead to the electromechanical coupling effect and the difficulty of deriving accurate transient mechanical response, as well as the charging progress. The proposed model is built upon the Euler-Bernoulli beam theory and takes into account the electromechanical coupling effects as well as the dynamic process of charging an external storage capacitor. The model is validated through experimental tests on a cantilever beam coated with piezoelectric patches. Several parametric studies are performed and the functionality of the model is verified. The efficiency of power harvesting system can be predicted and tuned considering variations in different design parameters. Such a model can be utilized to design robust and optimal energy harvesting system.
机译:本文介绍了一种迭代数值方法,可以精确地模拟充电电容器的能量收集系统,用压电贴片充电。与二极管桥和电容器的外部充电电路连接的压电材料的组成关系导致机电耦合效果,难以导出精确的瞬态机械响应,以及充电进度。所提出的模型建立在Euler-Bernoulli光束理论上,并考虑到机电耦合效应以及充电外部存储电容的动态过程。该模型通过涂有压电贴片的悬臂梁上的实验测试来验证。执行了几项参数研究,验证了模型的功能。考虑到不同设计参数的变化,可以预测和调整功率收集系统的效率。这种模型可用于设计稳健和最佳的能量收集系统。

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