Hara Yushin, Otsuka Keisuke, Makihara Kanjuro
Department of Aerospace Engineering, Tohoku University, Sendai 980-8579, Japan.
Sensors (Basel). 2021 Jun 6;21(11):3913. doi: 10.3390/s21113913.
The objective of this paper is to amplify the output voltage magnitude from a piezoelectric vibration energy harvester under nonstationary and broadband vibration conditions. Improving the transferred energy, which is converted from mechanical energy to electrical energy through a piezoelectric transducer, achieved a high output voltage and effective harvesting. A threshold-based switching strategy is used to improve the total transferred energy with consideration of the signs and amplitudes of the electromechanical conditions of the harvester. A time-invariant threshold cannot accomplish effective harvesting under nonstationary vibration conditions because the assessment criterion for desirable control changes in accordance with the disturbance scale. To solve this problem, we developed a switching strategy for the active harvester, namely, adaptive switching considering vibration suppression-threshold strategy. The strategy adopts a tuning algorithm for the time-varying threshold and implements appropriate intermittent switching without pre-tuning by means of the fuzzy control theory. We evaluated the proposed strategy under three realistic vibration conditions: a frequency sweep, a change in the number of dominant frequencies, and wideband frequency vibration. Experimental comparisons were conducted with existing strategies, which consider only the signs of the harvester electromechanical conditions. The results confirm that the presented strategy achieves a greater output voltage than the existing strategies under all nonstationary vibration conditions. The average amplification rate of output voltage for the proposed strategy is 203% compared with the output voltage by noncontrolled harvesting.
本文的目的是在非平稳和宽带振动条件下,放大压电振动能量采集器的输出电压幅值。通过压电换能器将机械能转换为电能来提高传输能量,从而实现高输出电压和有效的能量采集。考虑到采集器机电状态的符号和幅值,采用基于阈值的切换策略来提高总传输能量。在非平稳振动条件下,时不变阈值无法实现有效的能量采集,因为理想控制的评估标准会随着干扰规模的变化而变化。为了解决这个问题,我们开发了一种用于有源采集器的切换策略,即考虑振动抑制阈值策略的自适应切换。该策略采用了一种针对时变阈值的调整算法,并借助模糊控制理论在无需预调谐的情况下实现适当的间歇切换。我们在三种实际振动条件下评估了所提出的策略:频率扫描、主导频率数量的变化以及宽带频率振动。与仅考虑采集器机电状态符号的现有策略进行了实验比较。结果证实,在所提出的策略在所有非平稳振动条件下都能实现比现有策略更高的输出电压。与无控制采集的输出电压相比,所提出策略的输出电压平均放大率为203%。