Xu Zhenlong, Yang Hong, Zhang Hao, Ci Huawei, Zhou Maoying, Wang Wen, Meng Aihua
School of Mechanical Engineering, Hangzhou Dianzi University, Hangzhou 310018, China.
School of Medicine, Zhejiang University, Hangzhou 310058, China.
Sensors (Basel). 2019 Jul 20;19(14):3203. doi: 10.3390/s19143203.
The approach to improve the output power of piezoelectric energy harvester is one of the current research hotspots. In the case where some sources have two or more discrete vibration frequencies, this paper proposed three types of magnetically coupled multi-frequency hybrid energy harvesters (MHEHs) to capture vibration energy composed of two discrete frequencies. Electromechanical coupling models were established to analyze the magnetic forces, and to evaluate the power generation characteristics, which were verified by the experimental test. The optimal structure was selected through the comparison. With 2 m/s excitation acceleration, the optimal peak output power was 2.96 mW at 23.6 Hz and 4.76 mW at 32.8 Hz, respectively. The superiority of hybrid energy harvesting mechanism was demonstrated. The influences of initial center-to-center distances between two magnets and length of cantilever beam on output power were also studied. At last, the frequency sweep test was conducted. Both theoretical and experimental analyses indicated that the proposed MHEH produced more electric power over a larger operating bandwidth.
提高压电能量收集器输出功率的方法是当前的研究热点之一。在一些源具有两个或更多离散振动频率的情况下,本文提出了三种类型的磁耦合多频混合能量收集器(MHEH),以捕获由两个离散频率组成的振动能量。建立了机电耦合模型来分析磁力,并评估发电特性,通过实验测试进行了验证。通过比较选择了最佳结构。在2 m/s的激励加速度下,最佳峰值输出功率在23.6 Hz时为2.96 mW,在32.8 Hz时为4.76 mW。证明了混合能量收集机制的优越性。还研究了两个磁体之间的初始中心距和悬臂梁长度对输出功率的影响。最后进行了扫频测试。理论和实验分析均表明,所提出的MHEH在更大的工作带宽上产生了更多的电能。