This paper studies the nonlinear dynamics of a nonlinear energy harvester of magnetic levitation that uses electromagnetic induction to convert vibration into electrical energy under multifrequency excitation. The amplitudefrequency response of the energy harvester is investigated by varying the external frequency. The nonlinear equations of electromagneticmechanic coupling model are approximately analyzed by using the harmonic balance method and arclength method. Through changing the excitation frequency, the characteristics of the steadystate amplitudefrequency response containing two resonances are studied. The results show that the resonance peak of displacement amplitude frequency response under multifrequency excitation is decreased, but the bandwidth is increased with the increase of nonlinear coefficient. Moreover, the effects of the resistance, inductance and coupling coefficient are investigated to determine the influences of the intensity of energy acquisition and the bandwidth. In addition, the approximate analytic results are verified through direct numerical simulations of up sweep and down sweep.
王祖尧,丁虎,陈立群.多频激励磁悬浮能量采集[J].动力学与控制学报,2017,15(2):125~130; Wang Zuyao, Ding Hu, Chen Liqun. Energy harvesting of magnetic levitation under multi-frequency excitations[J]. Journal of Dynamics and Control,2017,15(2):125-130.