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Finite element based system simulation for piezoelectric vibration energy harvesting devices

机译:基于有限元的压电振动能量采集装置系统仿真

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We present a system simulation approach for piezoelectric vibration energy harvesting devices. Accurate modeling of the electromechanical structure is achieved by the finite element method. For consideration of power electronic circuits as a means of energy extraction, the finite element model is iteratively coupled to electric circuits via Simulink. The high computational cost of conventional finite element calculations is overcome by a specialized modal truncation method for general linear piezoelectric structures. In doing so, the simulation approach allows efficient prediction of mechanical quantities (e.g. displacements, stresses) as well as electric potentials in the continuum under the influence of arbitrary electrical circuits. Several examples are studied to validate the truncation approach against analytical models and full finite element models. The applicability of the method is demonstrated for a piezoelectric vibration energy harvester in conjunction with a power electronic circuit.
机译:我们提出了一种用于压电振动能量收集装置的系统仿真方法。机电结构的精确建模是通过有限元方法实现的。考虑将电力电子电路作为能量提取的一种方式,通过Simulink将有限元模型迭代耦合到电路。传统的有限元计算的高计算成本可以通过针对一般线性压电结构的专门模态截断方法来克服。这样做时,仿真方法允许在任意电路的影响下有效地预测机械量(例如位移,应力)以及连续体中的电势。研究了几个示例,以针对分析模型和完整有限元模型验证截断方法。结合压电电子能量收集器和电力电子电路,证明了该方法的适用性。

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