首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Load Resistance Optimization of a Magnetically Coupled Two-Degree-of-Freedom Bistable Energy Harvester Considering Third-Harmonic Distortion in Forced Oscillation
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Load Resistance Optimization of a Magnetically Coupled Two-Degree-of-Freedom Bistable Energy Harvester Considering Third-Harmonic Distortion in Forced Oscillation

机译:考虑强制振荡中的三次谐波失真磁耦合二维自由度的磁耦合两度自由度的磁耦合优化

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摘要

In this study, the external load resistance of a magnetically coupled two-degree-of-freedom bistable energy harvester (2-DOF MCBEH) was optimized to maximize the harvested power output, considering the third-harmonic distortion in forced response. First, the nonlinear dynamic analysis was performed to investigate the characteristics of the large-amplitude interwell motions of the 2-DOF MCBEH. From the analysis results, it was found that the third-harmonic distortion occurs in the interwell motion of the 2-DOF MCBEH system due to the nonlinear magnetic coupling between the beams. Thus, in this study, the third-harmonic distortion was considered in the optimization process of the external load resistance of the 2-DOF MCBEH, which is different from the process of conventional impedance matching techniques suitable for linear systems. The optimal load resistances were estimated for harmonic and swept-sine excitations by using the proposed method, and all the results of the power outputs were in excellent agreements with the numerically optimized results. Furthermore, the associated power outputs were compared with the power outputs obtained by using the conventional impedance matching technique. The results of the power outputs are discussed in terms of the improvement in energy harvesting performance.
机译:在该研究中,优化了磁耦合二维自由度双稳态能量收割机(2-DOF MCBEH)的外部载荷电阻以最大化收获的功率输出,考虑到强制响应中的第三谐波失真。首先,进行非线性动态分析以研究2-DOF MCBEH的大幅度接口运动的特性。从分析结果来看,发现由于梁之间的非线性磁耦合,在2-DOF MCBEH系统的间隙运动中发生三次谐波失真。因此,在该研究中,在2-DOF MCBEH的外部载荷电阻的优化过程中考虑了第三次谐波变形,这与适合于线性系统的常规阻抗匹配技术的过程不同。通过使用所提出的方法估计最佳负载电阻和扫除 - 正弦激励,并且功率输出的所有结果都与数值优化的结果具有很好的协议。此外,将相关的电力输出与通过使用传统阻抗匹配技术获得的功率输出进行比较。在能量收集性能的提高方面讨论了电力输出的结果。

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