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Model and Experimental Research on an Electromagnetic Vibration-Powered Generator With Annular Permanent Magnet Spring

机译:环形永磁弹簧电磁振动发电机的模型与实验研究

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This paper presents a new electromagnetic vibration-powered generator. The input-output mathematical model of an axial magnetization annular permanent magnet spring is built. Taking advantage of the model, the characteristic curve of the magnetic force versus the displacement is obtained. Wires were wound both inside and outside of the annular permanent magnet to form an inner coil and an outer coil, respectively. The characteristic curve of the magnetic force, the natural frequency, the output voltage waveforms of the outer coil and the inner coil, and the magnetic field distribution of the designed generator have been simulated using the Finite Element method (FEM). Tests results of the output waveforms have good agreement with the simulation results. The maximum output power of the designed vibration-powered generator is 28.3 mW, and the open circuit RMS voltage is 5.1 V at an vibration frequency of 20 Hz and an amplitude of 5 mm.
机译:本文提出了一种新型的电磁振动发电机。建立了轴向磁化环形永磁弹簧的输入输出数学模型。利用该模型,获得了磁力相对于位移的特性曲线。将导线缠绕在环形永磁体的内部和外部,分别形成内部线圈和外部线圈。使用有限元方法(FEM)模拟了磁力的特性曲线,固有频率,外线圈和内线圈的输出电压波形以及所设计发电机的磁场分布。输出波形的测试结果与仿真结果吻合良好。设计的振动发电机的最大输出功率为28.3 mW,在20 Hz的振动频率和5 mm的振幅下,开路RMS电压为5.1V。

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