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Maximizing Direct Current Power Delivery from Bistable Vibration Energy Harvesting Beams Subjected to Realistic Base Excitations

机译:受到现实基础激励的双稳态振动能量收集梁的直流电传递最大化

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Effective development of vibration energy harvesters is required to convert ambient kinetic energy into useful electrical energy as power supply for sensors, for example in structural health monitoring applications. Energy harvesting structures exhibiting bistable nonlinearities have previously been shown to generate large alternating current (AC) power when excited so as to undergo snap-through responses between stable equilibria. Yet, most microelectronics in sensors require rectified voltages and hence direct current (DC) power. While researchers have studied DC power generation from bistable energy harvesters subjected to harmonic excitations, there remain important questions as to the promise of such harvester platforms when the excitations are more realistic and include both harmonic and random components. To close this knowledge gap, this research computationally and experimentally studies the DC power delivery from bistable energy harvesters subjected to such realistic excitation combinations as those found in practice. Based on the results, it is found that the ability for bistable energy harvesters to generate peak DC power is significantly reduced by introducing sufficient amount of stochastic excitations into an otherwise harmonic input. On the other hand, the elimination of a low amplitude, coexistent response regime by way of the additive noise promotes power delivery if the device was not originally excited to snap-through. The outcomes of this research indicate the necessity for comprehensive studies about the sensitivities of DC power generation from bistable energy harvester to practical excitation scenarios prior to their optimal deployment in applications.
机译:需要有效开发振动能量收集器,以将环境动能转换为有用的电能,作为传感器的电源,例如在结构健康监测应用中。先前已经显示出表现出双稳态非线性的能量收集结构在被激发时会产生大的交流(AC)功率,从而在稳定的平衡之间经历快速响应。但是,传感器中的大多数微电子设备都需要整流电压,因此需要直流(DC)电源。尽管研究人员已经研究了受到谐波激励的双稳态能量采集器产生的直流电,但是,当这种激励更加实际且包括谐波和随机成分时,对于此类采集器平台的前景仍存在重要的疑问。为了弥合这一知识鸿沟,本研究通过计算和实验研究了双稳态能量采集器的直流电输送,该双稳态能量采集器受到了实际中发现的实际励磁组合的影响。根据结果​​,发现通过将足够数量的随机激励引入到否则为谐波的输入中,双稳态能量采集器产生峰值直流功率的能力将大大降低。另一方面,如果最初并未激发该器件快速击穿,则通过加性噪声消除低幅度,共存的响应机制可促进功率传输。这项研究的结果表明,有必要对从双稳态能量采集器到实际励磁方案的直流发电的敏感性进行全面研究,然后再对其进行最佳部署。

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