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Analysis of Tristable Energy Harvesters Under Random Excitations

机译:随机激励下的螺旋能收割机分析

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This manuscript analyzes the performance of a tristable vibration energy harvester under Gaussian white noise excitation. Broadband vibration energy harvesting has attracted significant research attention and is targeted toward obtaining large power output over a wide range of frequencies. Nonlinearity can be introduced into vibration energy harvesting systems through multi-stability. In cantilever-type vibration energy harvesters, multi-stability could be achieved by the introduction of magnetic interactions. When two external magnets are used, the harvester can have up to three stable static equilibrium positions. The harvester with two stable states has been explored widely, both theoretically and experimentally. Recently, the harvester with three stable states is shown to perform better than its bistable counterpart in the presence of a linearly increasing harmonic sweep excitation. Ambient vibrations are random in nature, and the performance of tristable energy harvesters under such excitations needs to be studied. To begin with, we study the performance of tristable energy harvesters under Gaussian white noise excitation through numerical simulations. The simulations show that beyond a certain critical amplitude of excitation, the harvesters undergo inter-well oscillations and harvest more power. This implies that if the variance of the random ambient excitation is known, then the harvester could be optimized so that the mean harvested power is maximized.
机译:该手稿分析了高斯白噪声激励下拖曳振动能量收割机的性能。宽带振动能量收集引起了显着的研究,并针对广泛的频率获得大功率输出。通过多稳定性可以将非线性引入振动能量收集系统。在悬臂式振动能量收割机中,通过引入磁相互作用可以实现多稳定性。当使用两个外部磁体时,收割机可具有最多三个稳定的静态平衡位置。在理论上和实验上,已经探讨了两个稳定状态的收割机。最近,在存在线性增加的谐波扫描激发的情况下,具有三种稳定状态的收割机比其双稳态对应物更好。环境振动本质上是随机的,并且需要研究在这种激动下的扭转能量收割机的性能。首先,我们通过数值模拟研究了高斯白噪声激励下的追溯能量收割机的性能。该模拟表明,超出了一定的激励幅度,收割机经历井间振荡并收获更多的功率。这意味着如果已知随机环境激励的方差,则可以优化收割机,使得平均收获的功率最大化。

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