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首页> 外文期刊>The European physical journal: Special topics >Reduced-order modeling with multiple scales of electromechanical systems for energy harvesting
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Reduced-order modeling with multiple scales of electromechanical systems for energy harvesting

机译:具有多尺度的机电系统进行衰减阶建模

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New technologies that aim at powering wireless nodes by scavenging the energy from ambient vibrations can be a practical solution for some structural monitoring applications in the near future. In view of possible large-scale applications of piezoelectric energy harvesters, an accurate modeling of the interfaces in these devices is needed for more advanced and reliable simulations, since they might have large influence on functionality and performance of smart monitoring infrastructures. In this perspective, a novel multiscale and multiphysics hybrid approach is proposed to assess the dynamic response of piezoelectric energy harvesting devices. Within the framework of the presented approach, the FE2 method is employed to compute stress and strain levels at the microscale in the most critical interfaces. The displacement-load curve of the whole device (so-called capacity curve or pushover curve) is then obtained by means of the application of a suitable pattern of static forces. Finally, the parameters of a reduced-order model are calibrated on the basis of the nonlinear static analysis. This reduced-order model, in turn, is employed for the efficient dynamic analysis of the energy harvesting device.
机译:通过从环境振动中清除能量来供电无线节点供电的新技术可以是在不久的将来的某些结构监测应用的实用解决方案。鉴于压电能量收割机可能的大规模应用,需要对这些设备中的接口进行准确建模,以获得更先进和可靠的模拟,因为它们可能对智能监控基础设施的功能和性能产生很大影响。在这种观点中,提出了一种新型多尺度和多体化混合方法来评估压电能量收集装置的动态响应。在所提出的方法的框架内,使用FE2方法来计算在最关键的接口中的微尺度下的压力和应变水平。然后通过施加合适的静力模式获得整个装置(所谓的容量曲线或推送曲线)的位移负荷曲线。最后,在非线性静态分析的基础上校准了阶阶模型的参数。该阶数模型又采用了能量收集装置的有效动态分析。

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