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Charging power optimization for nonlinear vibration energy harvesting systems subjected to arbitrary, persistent base excitations

机译:非线性振动能量收集系统的充电功率优化进行任意,持久性基础激励

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摘要

The vibrations of mechanical systems and structures are often a combination of periodic and random motions. Emerging interest to exploit nonlinearities in vibration energy harvesting systems for charging microelectronics may be challenged by such reality due to the potential to transition between favorable and unfavorable dynamic regimes for DC power delivery. Therefore, a need exists to devise an optimization method whereby charging power from nonlinear energy harvesters remains maximized when excitation conditions are neither purely harmonic nor purely random, which have been the attention of past research. This study meets the need by building from an analytical approach that characterizes the dynamic response of nonlinear energy harvesting platforms subjected to combined harmonic and stochastic base accelerations. Here, analytical expressions are formulated and validated to optimize charging power while the influences of the relative proportions of excitation types are concurrently assessed. It is found that about a 2 times deviation in optimal resistive loads can reduce the charging power by 20% when the system is more prominently driven by harmonic base accelerations, whereas a greater proportion of stochastic excitation results in a 11% reduction in power for the same resistance deviation. In addition, the results reveal that when the frequency of a predominantly harmonic excitation deviates by 50% from optimal conditions the charging power reduces by 70%, whereas the same frequency deviation for a more stochastically dominated excitation reduce total DC power by only 20%. These results underscore the need for maximizing direct current power delivery for nonlinear energy harvesting systems in practical operating environments.
机译:机械系统和结构的振动通常是周期性和随机运动的组合。由于在DC电力输送的有利和不利动态制度之间过渡的可能性,这种现实可能会挑战用于充电微电子的振动能量收集系统中的非线性的兴趣。因此,需要设计一种优化方法,从而当激励条件既纯粹谐波也不是纯粹随机的时,从非线性能量收割机充电的优化方法仍然最大化,这是过去研究的关注。本研究通过分析方法构建了特征,该方法旨在表征非线性能量收集平台的动态响应,这些平台进行组合谐波和随机基础加速度。这里,配制分析表达式并验证以优化充电功率,同时评估相对比例的激发类型的影响。结果发现,当系统更突出地由谐波基础加速度驱动时,大约2次偏差可以将充电功率降低20%,而随机激励的比例较大,导致电力降低11%相同的电阻偏差。此外,结果表明,当主要谐波激励的频率从最佳条件偏离50%时,充电功率降低了70%,而相同的频率偏差对于更随机统治的激励的相同频率偏差仅通过20%降低总直流电源。这些结果强调了在实际操作环境中为非线性能量收集系统最大化直流电源的需求。

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