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Design and simulation of vibration based energy harvesting device with stepped cantilever beams

机译:基于振动的阶梯式悬臂梁能量采集装置的设计与仿真

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This paper presents a vibration based energy harvester that is based on MEMS technology. In this paper, first we simulated a unimorph piezoelectric cantilever with non-traditional geometry and concluded that the particular structure is able to generate higher voltage and thus more power can be achieved, then we proposed that non- traditional structure (step sized beam) instead the conventional non linear springs with proof mass in the vibrational energy harvester and got higher displacement of the proof mass with the lower frequency range. This energy harvester is able to remove the battery problems in various fields like wireless sensors, military and biomedical applications etc. Displacement is measured for different applied pressures and various eigen frequencies. Simulation is carried out using COMSOL multiphysics.
机译:本文介绍了一种基于MEMS技术的基于振动的能量收集器。在本文中,我们首先模拟了具有非传统几何形状的单压电晶片压电悬臂,并得出结论,特定的结构能够产生更高的电压,从而可以实现更大的功率,然后我们提出使用非传统的结构(步长大小的梁)代替在振动能量采集器中,传统的带有检测质量的非线性弹簧在较低的频率范围内具有较高的检测质量位移。该能量采集器能够消除无线传感器,军事和生物医学应用等各个领域中的电池问题。针对不同的施加压力和各种本征频率测量位移。使用COMSOL多物理场进行仿真。

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