Advantages of a novel truncated cone DE-air generator in energy conversion

Z.-C. Lai, Aiije Feng, Shitong Fang, Zhouzhou Wang, Mengyao Wu, Bangjie Lin, Runye Shi, D. Yurchenko
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Abstract

Harvesting energy from ambient environments such as vibrations is a feasible approach to selfpower low powered electric devices. T- he dielectric elastomer generator (DEG) is a type of novel electrostatic generator with superior vibration energy harvesting (EH) performance. On the basis of traditional DEGs, a new concept of dielectric elastomer (DE)-air generator (DEAG), which contains the air layer and the DE membrane (DEM) as a composite dielectric layer, is proposed in this paper for the first time. Inspired by a classical truncated cone DEG (TC-DEG) concept, the novel truncated cone DEAG (TC-DEAG) is designed and comprehensively studied. Compared with the TC-DEG, the proposed TC-DEAG provides the larger capacitance ratio, leading to superior electrical output. The energy conversion mechanisms of both the TC-DEG and the TC-DEAG under a regular linear reciprocating excitation are analyzed theoretically by deducing the deformation condition of the DEM and the electrical outputs. Through measuring the capacitance of the DEM under deformations and testing the output voltage of the fabricated generators, the proposed theoretical models and predictions are verified. Moreover, numerical simulations based on the verified theoretical model are conducted to reveal the influences of some important system parameters on the EH performances of both generators, providing guidelines for the performance improvement of the generators.
新型截顶锥 DE-air 发电机在能源转换中的优势
从振动等环境中收集能量是为低功率电动设备自供电的一种可行方法。介电弹性体发电机(DEG)是一种新型静电发电机,具有卓越的振动能量收集(EH)性能。本文在传统介质弹性体发电机的基础上,首次提出了介质弹性体-空气发电机(DEAG)的新概念,即包含空气层和介质弹性体膜(DEM)的复合介质层。受经典截顶锥 DEAG(TC-DEG)概念的启发,本文设计并全面研究了新型截顶锥 DEAG(TC-DEAG)。与 TC-DEG 相比,所提出的 TC-DEAG 提供了更大的电容比,从而实现了更优越的电输出。通过推导 DEM 的变形条件和电输出,从理论上分析了 TC-DEG 和 TC-DEAG 在规则线性往复激励下的能量转换机制。通过测量变形条件下 DEM 的电容和测试所制造发电机的输出电压,验证了所提出的理论模型和预测。此外,还根据验证的理论模型进行了数值模拟,揭示了一些重要系统参数对两种发电机电磁场性能的影响,为改进发电机的性能提供了指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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