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Vibrational energy harvesting devices for Structural Health Monitoring – Design optimization

机译:用于结构健康监测的振动能量收集装置 - 设计优化

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Starting from a previous realized piezoelectric vibrational harvesting device and its associated model, we present in this paper a design optimization approach that starts form both sides, customer needs (Voice of Customer) – translated in product / device requirements – and manufacturing process capability; we use Design Of Experiment (DOE) tool as analytical experimental strategy. The device requirements are given by the vibrational sources from the environment (frequency and acceleration) and by its purpose, which is, in our case, to provide electrical power to different sensors for Structural Health Monitoring (SHM) of airplanes or bridges. The results is an optimal design of our devices for different effective vibrational frequencies from environment, providing harvesting piezoelectric devices with adequate frequency resonance and the maximum possible (optimal) output electrical power, considering also available technological processes (Process Capability).
机译:从先前实现的压电振动收集装置及其相关型号开始,我们在本文中展示了一种设计优化方法,开始形成双方,客户需求(客户的声音) - 在产品/设备要求中翻译 - 以及制造过程能力;我们使用实验(DOE)工具设计作为分析实验策略。器件要求由来自环境(频率和加速度)的振动源给出,并且其目的是在我们的情况下,为飞机或桥梁的结构健康监测(SHM)提供电力。结果是我们对环境不同有效振动频率的设备的最佳设计,提供了具有足够频率谐振的收获压电装置和最大可能(最佳)输出电力,考虑到可用的技术过程(工艺能力)。

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