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Harvesting the Ultimate Electrical Power From MEMS Piezoelectric Vibration Energy Harvesters: An Optimization Approach

机译:通过MEMS压电振动能量收集器收集最终电能:一种优化方法

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Optimized MEMS piezoelectric vibration energy harvesters with maximum possible power generation have been proposed. The energy harvesters work based on the transduction of the applied vibration induced stress on the cantilever beams into the electrical power. Particle swarm optimization approach has been used to design the optimum unimorph and bimorph structures. The optimization has been done for different combinations of the top and bottom piezoelectric layers in bimorph energy harvesters. The geometries of the proposed structures and their harvested powers before and after the optimization have been calculated and compared. The optimization parameters have been chosen so that asymmetric structures with partial coverage of piezoelectric layers would be investigated. The results show that the proposed structures serve as the maximum power generators and provide the largest possible electrical power. In order to limit the beam free end displacement, a guided two beam design has been proposed and optimized. The proposed bimorph guided two beam energy harvester could achieve the minimum displacement which has a key effect on the lifetime of the energy harvesters.
机译:已经提出了具有最大可能发电量的优化的MEMS压电振动能量收集器。能量收集器的工作原理是,将施加在悬臂梁上的振动感应应力转换为电能。粒子群优化方法已被用于设计最佳的单压电晶片和双压电晶片结构。已针对双压电晶片能量收集器中顶部和底部压电层的不同组合进行了优化。已计算并比较了建议的结构的几何形状及其优化前后的功率。选择了优化参数,以便研究具有压电层部分覆盖的不对称结构。结果表明,所提出的结构是最大的发电机,并提供最大可能的电力。为了限制光束的自由端位移,已经提出并优化了引导式两光束设计。所提出的双压电晶片制导的两束能量采集器可以实现最小位移,这对能量采集器的寿命具有关键影响。

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