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Design and development of cantilever-type MEMS based piezoelectric energy harvester

机译:基于悬臂式的基于MEMS的压电能量收割机的设计与开发

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Vibration energy harvesting is gaining attention due to abundance of vibration energy at most places and ability to generate power MEMS devices from microwatts to few millwatts. Piezoelectric energy harvesters are the most suitable for vibration energy harvesting due to simplicity in design, operation and fabrication in MEMS technology. Cantilever fixed from one end and seismic mass on the free end is used to harvest energy which is modeled as spring mass damper system responding to a single frequency. Wideband frequency operation for the energy harvester must be ensured so that power is harvested for a range of frequency. In this paper cantilever array with variable length from 2000 μm to 2200 μm is designed and simulated at a boundary load of 1 bar pressure to achieve a wideband frequency operation from 681 Hz to 1215 Hz.
机译:由于大多数地方的振动能量和能力从微瓦产生电源MEMS器件到很少的磨机,因此振动能量收集是由于大多数振动能量而受到关注。由于MEMS技术的设计,操作和制造的简单性,压电能量收割机最适合振动能量收集。从自由端的一端和地震质量固定的悬臂用于收获作为响应单个频率的弹簧质量阻尼系统建模的能量。必须确保能量收集器的宽带频率操作,以便为一系列频率收获电力。在本文的悬臂阵列中,可变长度从2000μm至2200μm的边界负荷设计和模拟,以实现从681 Hz到1215 Hz的宽带频率操作。

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