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Two degree of freedom vibration based electromagnetic energy harvester for bridge health monitoring system

机译:基于自由度的自由度振动电磁能量收割机,用于桥梁健康监测系统

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This paper presents an electromagnetic energy harvester to extract low frequency and low acceleration vibration energy available in a bridge environment. The developed harvester is a multi-mode oscillator with dual electromagnetic transduction mechanisms. The harvester consists of two cantilever beams. The first cantilever beam is split into two equal pieces along its length and the second beam placed in between them coming back to the fixed end and attached at outer end to the first beam. This way instead of a long conventional cantilever beam a compact harvester is fabricated. Two magnets as proof masses are attached to each free end of the beam making it a two degree of freedom system (2-DOF). The magnets are positioned to oscillate inside hand wound coils during operation. An analytical model was developed and COMSOL multiphysics was used to simulate the mode shapes of the harvester. The mathematical model was simulated for open circuit voltage in MATLAB and showed closely matching results with the experimental values. The harvester is characterized in lab for its performance under sinusoidal vibrations at low frequency (3 Hz-15 Hz) and low acceleration (0.01-0.09 g) levels. The 2-DOF harvester has two resonant frequencies of 4.4 Hz and 5.5 Hz and a volume of 333 cm(3). It produces maximum voltage of 0.6 V at first resonance on coil-1 and maximum voltage of 1.2 V on coil-2 at second resonance at 0.09 g. At acceleration of 0.09 g the harvester produced 2.51 mW at first resonant frequency and 10.7 mW at second resonance. Moreover, the AC output voltage of the harvester is rectified to DC voltage by a three-stage Cockcroft-Walton multiplier type circuit. The DC power output at 0.05 g was 0.939 mW at first resonance and 0.956 mW at second resonance while maximum voltages of 5.4 V on coil-1 and 4 V on coil-2 were produced.
机译:本文介绍了电磁能量收割机,以提取桥梁环境中可用的低频和低加速振动能量。发达的收割机是一种具有双电磁转导机构的多模振荡器。收割机由两个悬臂梁组成。第一悬臂梁沿其长度分成两个相等的件,并且第二梁放置在它们之间,它们返回到固定端并且在外端附接到第一梁。这种方式代替长期的悬臂梁,制造了紧凑的收割机。两种磁铁作为样张质量连接到光束的每个自由端,使其成为两级自由度系统(2-DOF)。磁体定位成在操作期间振荡内部手动缠绕线圈。开发了一个分析模型,使用COMSOL Multiphysics来模拟收割机的模式形状。模拟MATLAB中的开路电压的数学模型,并与实验值紧密匹配。收割机的特点是实验室,在低频(3Hz-15Hz)下正弦振动下的性能,低加速度(0.01-0.09g)水平。 2-DOF Harvester有两个4.4 Hz和5.5Hz的共振频率,体积为333厘米(3)。它在线圈-1上的第一谐振下产生0.6V的最大电压,并在第二谐振下为0.09g的线圈2上的1.2V的最大电压。在0.09g的加速度下,收割机在第一谐振频率下产生2.51兆瓦,第二次共振下10.7兆瓦。此外,通过三级CockCroft-Walton乘数电路将收割机的AC输出电压整流为DC电压。在0.05g的直流电源输出在第一谐振下为0.939mw,第二次共振0.956mW,而线圈-1和4V上的线圈-1上的最大电压为5.4V。

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