电磁电机双稳态振动发电系统及随机共振提高效率

Wei Zhao, Yoshiro Fujiwara, Jingchao Guan, Apollo B. Fukuchi, Xilu Zhao
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摘要

利用随机共振技术进行振动能量收集已成为一个重要的研究课题。基于由弹簧质量组成的斜支撑双稳运动模型,研制了一种电磁电机振动能量收集系统。建立了该振动系统的运动控制方程,并对其势能性能进行了分析,证明了该系统在整个运动范围内具有双稳态振动特性。为了利用随机共振现象扩大振动幅值,利用Kramer率推导了引起随机共振的周期激励频率的预测公式。进行了一项实验;所得结果与激振频率预测值吻合较好,验证了随机共振周期激振频率预测公式的有效性。验证了所提出的双稳态振动能量收集系统通过同时激励随机信号和周期信号可靠地产生随机共振。实验结果表明,振动放大效应显著,显著提高了振动发电性能。
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Bi-Stable Vibration Power Generation System Using Electromagnetic Motor and Efficiency Improvement by Stochastic Resonance
Research on vibration energy harvesting using stochastic resonance has become an important research topic. A vibration energy harvesting system was developed using electromagnetic motors based on an obliquely supported bistable motion model consisting of a spring mass. After formulating the motion-governing equations of the proposed vibrating system and analyzing its potential energy performance, it was demonstrated that the system exhibits bi-stable vibration characteristics throughout its entire range of motion. To expand the vibration amplitude using the stochastic resonance phenomenon, a prediction formula for the periodic excitation frequency that causes stochastic resonance was derived using Kramer's rate. An experiment was conducted; the obtained results and predicted values of the excitation frequency agreed well and the validity of the prediction formula for the periodic excitation frequency of stochastic resonance was verified. It was confirmed that the proposed bistable vibration energy harvesting system reliably generated stochastic resonance by exciting random and periodic signals at the same time. The results of the experiment indicate that there was a significant vibration amplification effect, which significantly improved the vibration power generation performance.
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