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A new concept of speed amplified nonlinear electromagnetic vibration energy harvester through fixed pulley wheel mechanisms and magnetic springs

机译:通过固定滑轮机构和磁性弹簧的速度放大非线性电磁振动能量采集器的新概念

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This paper proposes a novel design of speed amplified nonlinear electromagnetic vibration energy harvester through fixed pulley wheel mechanisms and magnetic springs. The new vibration energy harvester consisting of fixed pulley wheel mechanisms, nonlinear magnetic springs, inner and outer rectangular ring Halbach arrays of magnets and a four phase coil connection has potential to generate more output voltage than that with the speed amplified linear electromagnetic vibration energy harvester and conventional non speed amplified nonlinear electromagnetic vibration energy harvester. By so far no one has worked on increasing the relative speed of the magnets with respect to the coils by adopting the fixed pulley wheel mechanisms. The nonlinear vibration was achieved by adopting repulsive magnetic springs with nonlinear spring stiffness. Analytical and simulation solutions of the speed amplified nonlinear electromagnetic vibration energy harvester system considering the effects of the rotational inertia of the pulley wheels have been verified by experimental results. The dimensionless formulae of the relative displacement, output voltage and harvested power of the speed amplified nonlinear electromagnetic vibration energy harvester system have been established and experimentally validated. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过固定滑轮机构和磁性弹簧,提出了一种新型的速度放大非线性电磁振动能量采集器的设计。这种新型的振动能量收集器由固定的皮带轮机构,非线性磁弹簧,矩形的内,外矩形环形哈尔巴赫磁体阵列以及四相线圈连接组成,其潜力是产生比速度放大线性电磁振动能量收集器更大的输出电压。常规的非速度放大非线性电磁振动能量采集器。到目前为止,还没有人通过采用固定的滑轮机构来提高磁体相对于线圈的相对速度。非线性振动是通过采用具有非线性弹簧刚度的排斥磁弹簧来实现的。实验结果验证了考虑了滑轮转动惯量影响的速度放大非线性电磁振动能量采集器系统的分析和仿真解决方案。建立了速度放大非线性电磁振动能量采集器系统的相对位移,输出电压和采集功率的无量纲公式,并进行了实验验证。 (C)2019 Elsevier Ltd.保留所有权利。

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