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A Nonlinear Hybrid Energy Harvester

机译:非线性混合能源收割机

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This manuscript discusses a magnetically coupled nonlinear hybrid piezo-electromagnetic energy harvester under harmonic base motion. Linear energy harvester works optimally when the natural frequency of the harvester meets the resonating frequency, elsewhere harvested power falls drastically. Most of the ambient vibration sources are random in nature. Hence, considering the realistic application, narrowband linear vibration energy harvesters are inefficient. Alternatively, nonlinear energy harvesters are capable of producing the electrical power over a broad frequency range. Hence, to acquire the optimum power in the broader frequency range, a magnetically coupled hybrid piezo-electromagnetic energy harvester is developed. In this current work, a tip loaded unimorph piezo cantilever beam configuration is used to scavenge electrical energy from the strain developed in the piezoelectric patch and spring-magnetic mass attached to another end of the cantilever beam with solenoid arrangements are used to scavenge electrical energy from the relative motion between magnetic mass and solenoid. This hybrid harvester is coupled with magnetic oscillators to introduces nonlinearity in the developed harvester. This paper compares, the energy harvested from the hybrid harvester with that of conventional piezoelectric and electromagnetic harvesters for both linear and nonlinear systems.
机译:该手稿在谐波基础运动下讨论了磁耦合的非线性混合压电压电电磁能量收割机。线性能量收割机在收割机的固有频率满足谐振频率时最佳地工作,其他地方收获功率急剧下降。大多数环境振动源本质上是随机的。因此,考虑到现实应用,窄带线性振动能量收割机效率低下。或者,非线性能量收割机能够在宽频率范围内产生电力。因此,为了获得更宽的频率范围内的最佳功率,开发了一种磁耦合的混合压电电磁能量收割机。在本电流工作中,尖端装载的单身用压电悬臂梁梁配置用于从压电贴片中开发的应变和附着在悬臂梁的另一端的弹簧磁性块,用螺线管布置来清除电能,用于剥夺电能磁质量和螺线管之间的相对运动。该混合收割机与磁振荡器相结合,以引发发发的收割机中的非线性。本文比较,从混合收割机收获的能量,具有用于线性和非线性系统的传统压电和电磁收割机的能量。

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