中国电机工程学报
中國電機工程學報
중국전궤공정학보
Proceedings of the CSEE
2015年
21期
5623-5631
,共9页
曹淑瑛%桑杰%郑加驹%王博文
曹淑瑛%桑傑%鄭加駒%王博文
조숙영%상걸%정가구%왕박문
Galfenol%悬臂梁%振动能量采集器%分布参数%机电耦合
Galfenol%懸臂樑%振動能量採集器%分佈參數%機電耦閤
Galfenol%현비량%진동능량채집기%분포삼수%궤전우합
Galfenol%cantilever beam%vibration energy harvester%distributed parameter%mechanical-electro coupling
依据欧拉–伯努利梁结构动力学理论、磁致伸缩材料线性本构方程和法拉第电磁感应定律,建立Galfenol悬臂梁振动能量采集器的分布参数机电耦合动态模型,由该模型推导出器件的频率特性表达式。计算在加速度激励下,器件输出的电压、电流、功率和顶端相对位移,并对器件的机电双向耦合重要动力学特性,如短路和开路行为,进行深入研究。计算结果与实验结果的比较表明,该模型能提供器件在低加速度激励时的合理数据趋势,并能预测器件在多阶模态下的机电双向耦合动态特性。建立的模型对于器件的整体性能预估、设计、控制和使用具有重要的指导作用。
依據歐拉–伯努利樑結構動力學理論、磁緻伸縮材料線性本構方程和法拉第電磁感應定律,建立Galfenol懸臂樑振動能量採集器的分佈參數機電耦閤動態模型,由該模型推導齣器件的頻率特性錶達式。計算在加速度激勵下,器件輸齣的電壓、電流、功率和頂耑相對位移,併對器件的機電雙嚮耦閤重要動力學特性,如短路和開路行為,進行深入研究。計算結果與實驗結果的比較錶明,該模型能提供器件在低加速度激勵時的閤理數據趨勢,併能預測器件在多階模態下的機電雙嚮耦閤動態特性。建立的模型對于器件的整體性能預估、設計、控製和使用具有重要的指導作用。
의거구랍–백노리량결구동역학이론、자치신축재료선성본구방정화법랍제전자감응정률,건립Galfenol현비량진동능량채집기적분포삼수궤전우합동태모형,유해모형추도출기건적빈솔특성표체식。계산재가속도격려하,기건수출적전압、전류、공솔화정단상대위이,병대기건적궤전쌍향우합중요동역학특성,여단로화개로행위,진행심입연구。계산결과여실험결과적비교표명,해모형능제공기건재저가속도격려시적합리수거추세,병능예측기건재다계모태하적궤전쌍향우합동태특성。건립적모형대우기건적정체성능예고、설계、공제화사용구유중요적지도작용。
Based on the structural dynamic theory of Euler- Bernouli beam, the linear constitutive equations of magnetostrictive material and the Faraday law of electromagnetic induction, a distributed parameter mechanical- electro coupled dynamic model of Galfenol cantilever vibration energy harvester has been established, and the frequency characteristic expressions for the device have been derived from the proposed model. The output voltage, current, power and tip relative displacement of the device under acceleration excitation have been calculated, and the mechanical-electro bidirectional coupled important dynamic characteristics of the device, such as short circuit and open circuit behaviors, have been studied in detail. Comparisons between the calculated and experimental results show that the proposed model can provide reasonable data trends of the device under low acceleration levels, and can predict the mechanical-electro bidirectional coupled dynamic characteristics of the device under multi-order modes. The established model has an important guiding role in the overall performance forecasting, designing, controlling and using of the device.