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

机译:从体验振动能量收集梁的最大化直流电源传递经受逼真的基础激励

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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:振动能量收割机的有效开发需要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。先前已经示出了表现出双稳态非线性的能量收集结构在激发时产生大的交流(AC)功率,以便经历稳定平衡之间的响应。然而,传感器中的大多数微电子都需要整流电压,因此是直流电流(DC)功率。虽然研究人员研究了从受谐波激励的双稳态能量收割机研究了直流发电,但在激励更现实的情况下,在这种收割机平台的承诺存在重要问题,并且包括谐波和随机组分。为了结束这种知识差距,这项研究正在计算和实验地研究从经过这种逼真的激励组合的双稳态能量收割机的直流电力输送,如在实践中发现的那些。基于该结果,通过将足够量的随机激励引入谐波输入,可以显着降低了生成峰值直流电力的双稳态能量收割机的能力。另一方面,如果该装置最初未兴奋地捕获,则通过添加剂噪声消除低振幅,共存响应方案促使电力传递。该研究的结果表明,在应用程序中最佳部署之前,对从双稳态能量收割机到实际激励情景的直流发电的敏感性的综合研究的必要性。

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