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A low-frequency, broadband and tri-hybrid energy harvester with septuple-stable nonlinearity-enhanced mechanical frequency up-conversion mechanism for powering portable electronics

机译:具有偏离稳定的非线性增强机械频率上转换机构的低频,宽带和三杂化能量收割机,用于供电便携式电子产品

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摘要

This study involves the design and investigation of a low-frequency, broadband, tri-hybrid energy harvester. The harvester consists of a novel septuple-stable nonlinearity-enhanced mechanical frequency up-conversion mechanism that not only enhances the output performance of the frequency up-conversion via inter-well motions, and also offers a wide and highly efficient operating bandwidth at low acceleration via the combination of resonant inter-well oscillation behavior and non-resonant behavior. The integration of an impact-driven piezoelectric generator, an electromagnetic generator, and a freestanding-mode tri-boelectric nanogenerator allows more energy to be harvested from a single mechanical motion, which further improves the power density. A prototype is fabricated and demonstrated using an electrodynamic shaker and various human motions. In the electrodynamic shaker test, the prototype exhibits a broad bandwidth of 2-12.5 Hz and generates an output power of 24.17 mW, corresponding to a power density of 700.3 W/m(3) across a matching load resistance of 35 k Omega at a frequency of 5 Hz and 1 g acceleration. Under various basic human motions such as handshaking, walking, and slow running, the prototype can generate output powers of 38.5, 24.5, and 27.2 mW, respectively, in horizontal positions and 42.7, 10.2, and 33.1 mW, respectively, in vertical positions. A comparison study is also presented to demonstrate that the tri-hybrid prototype can produce a much higher power density than other devices reported recently. This work makes significant progress toward hybrid-energy harvesting from various human motions and its potential application in powering wearable devices.
机译:本研究涉及对低频,宽带,三杂交能源收割机的设计和调查。 Harvester由新型偏见稳定的非线性增强的机械频率上转换机制组成,不仅通过井间动作增强了频率上转换的输出性能,并且还在低加速度下提供了广泛且高效的操作带宽通过谐振间井间振荡行为和非共振行​​为的组合。冲击驱动的压电发电机,电磁发生器和独立式三磁型纳米电器的整合允许从单个机械运动中收获更多的能量,这进一步提高了功率密度。使用电动振动器和各种人的运动来制造和证明原型。在电动振动筛检测中,原型表现出2-12.5 Hz的宽带宽,并产生24.17mW的输出功率,对应于35k欧米茄的匹配负载电阻的700.3W / m(3)的功率密度频率为5 Hz和1g加速度。在各种基本的人类运动中,如握手,行走和慢速运行,原型可以分别在垂直位置处分别在水平位置和42.7,10.2和33.1mW中产生38.5,24.5和27.2 mW的输出功率。还提出了比较研究以证明三杂化原型可以产生比最近报告的其他器件更高的功率密度。这项工作取得了重大进展,从而从各种人类动作和可穿戴设备供电的潜在应用。

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