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Optimal piezoelectric beam shape for single and broadband vibration energy harvesting: Modeling, simulation and experimental results

机译:用于单个和宽带振动能量收集的最佳压电梁形状:建模,仿真和实验结果

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摘要

Harvesting energy from the surroundings has become a new trend in saving our environment. Among the established ones are solar panels, wind turbines and hydroelectric generators which have successfully grown in meeting the world's energy demand. However, for low powered electronic devices; especially when being placed in a remote area, micro scale energy harvesting is preferable. One of the popular methods is via vibration energy scavenging which converts mechanical energy (from vibration) to electrical energy by the effect of coupling between mechanical variables and electric or magnetic fields. As the voltage generated greatly depends on the geometry and size of the piezoelectric material, there is a need to define an optimum shape and configuration of the piezoelectric energy scavenger. In this research, mathematical derivations for unim-orph piezoelectric energy harvester are presented. Simulation is done using MATLAB and COMSOL Multiphysics software to study the effect of varying the length and shape of the beam to the generated voltage. Experimental results comparing triangular and rectangular shaped piezoelectric beam are also presented.
机译:从周围环境中收集能量已成为节约环境的新趋势。太阳能电池板,风力涡轮机和水力发电机已经成功建立起来,可以满足世界能源需求。但是,对于低功率电子设备;特别是当放置在偏远地区时,优选微型能量收集。一种流行的方法是通过振动能量清除,其通过机械变量与电场或磁场之间的耦合作用将机械能(从振动)转换为电能。由于产生的电压很大程度上取决于压电材料的几何形状和尺寸,因此需要定义压电能量清除剂的最佳形状和配置。在这项研究中,提出了单态压电能量收集器的数学推导。使用MATLAB和COMSOL Multiphysics软件进行了仿真,以研究改变束的长度和形状对所产生电压的影响。还给出了比较三角形和矩形压电梁的实验结果。

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