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Optimization of a piezoelectric unimorph for shock and impact energy harvesting

机译:优化压电单压电晶片以收集冲击和冲击能量

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摘要

Piezoelectric bending structures can be designed to act as an electrical generator for converting ambient mechanical energy into useful electrical energy. The produced electrical energy is stored or dissipated into an electrical load. Most of the analyses on piezoelectric generators proposed in the literature are limited to a steady-state approach to the problem. These analyses fail to give clear insights when the dynamical behaviour of the piezoelectric bender is governed by its transient characteristics, for example in the case of a shock or impact excitation, and we analyse such a situation in this paper. It is first pointed out that the rate of transfer of energy towards the electrical load is optimized by maximizing the figure of merit of the structure and by choosing an appropriate value of the load. According to this consideration, a method to design piezoelectric benders for impact or shock energy harvesting in terms of their geometry and material properties is then proposed.
机译:可以将压电弯曲结构设计为充当发电机,以将周围的机械能转换为有用的电能。产生的电能被存储或消散为电负载。文献中提出的对压电发电机的大多数分析仅限于稳态方法来解决该问题。当压电弯管机的动态特性受其瞬态特性控制时,例如在冲击或冲击激励的情况下,这些分析无法给出清晰的见解,因此我们在本文中分析了这种情况。首先要指出的是,通过最大化结构的品质因数并选择合适的负载值,可以优化向电负载的能量传输速率。根据这种考虑,然后提出了一种设计压电弯曲器的方法,该弯曲器用于收集冲击或冲击能量的几何形状和材料特性。

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