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Optimization of vibratory energy harvesters with stochastic parametric uncertainty: a new perspective

机译:具有随机参数不确定性的振动能量收集器的优化:一种新的视角

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摘要

Vibration energy harvesting has been shown as a promising power source for many small-scale applications mainly because of the considerable reduction in the energy consumption of the electronics and scalability issues of the conventional batteries. However, energy harvesters may not be as robust as the conventional batteries and their performance could drastically deteriorate in the presence of uncertainty in their parameters. Hence, study of uncertainty propagation and optimization under uncertainty is essential for proper and robust performance of harvesters in practice. While all studies have focused on expectation optimization, we propose a new and more practical optimization perspective; optimization for the worst-case (minimum) power. We formulate the problem in a generic fashion and as a simple example apply it to a linear piezoelectric energy harvester. We study the effect of parametric uncertainty in its natural frequency, load resistance, and electromechanical coupling coefficient on its worst-case power and then optimize for it under different confidence levels. The results show that there is a significant improvement in the worst-case power of thus designed harvester compared to that of a naively-optimized (deterministically-optimized) harvester. © (2016) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:振动能量收集已被证明是许多小规模应用的有前途的动力源,主要是因为电子设备的能量消耗显着降低以及常规电池的可扩展性问题。但是,能量收集器可能不如常规电池那么坚固,并且在参数不确定的情况下其性能可能会急剧下降。因此,不确定性下不确定性传播和优化的研究对于实践中收割机的适当和强大性能至关重要。尽管所有研究都集中在期望优化上,但我们提出了一个新的,更实际的优化视角;最坏情况(最小)功率的优化。我们以一般方式阐述问题,并作为一个简单示例将其应用于线性压电能量收集器。我们研究了参数不确定性的固有频率,负载电阻和机电耦合系数对其最坏情况功率的影响,然后在不同置信度下对其进行了优化。结果表明,与天真优化(确定性优化)的收割机相比,这样设计的收割机在最坏情况下的功率有了显着改善。 ©(2016)版权,光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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