Phan Tra Nguyen, Bader Sebastian, Oelmann Bengt
Department of Electronics Design, Mid Sweden University, 85170 Sundsvall, Sweden.
Sensors (Basel). 2020 Sep 23;20(19):5456. doi: 10.3390/s20195456.
The introduction of nonlinearities into energy harvesting in order to improve the performance of linear harvesters has attracted a lot of research attention recently. The potential benefits of nonlinear harvesters have been evaluated under sinusoidal or random excitation. In this paper, the performances of electromagnetic energy harvesters with linear and nonlinear springs are investigated under real vibration data. Compared to previous studies, the parameters of linear and nonlinear harvesters used in this paper are more realistic and fair for comparison since they are extracted from existing devices and restricted to similar sizes and configurations. The simulation results showed that the nonlinear harvester did not generate higher power levels than its linear counterpart regardless of the excitation category. Additionally, the effects of nonlinearities were only available under a high level of acceleration. The paper also points out some design concerns when harvesters are subjected to real vibrations.
为了提高线性能量收集器的性能而将非线性引入能量收集领域,这一做法近来已吸引了大量研究关注。非线性收集器的潜在优势已在正弦激励或随机激励下得到评估。本文在实际振动数据下研究了带有线性弹簧和非线性弹簧的电磁能量收集器的性能。与之前的研究相比,本文中使用的线性和非线性收集器的参数更符合实际且具有可比性,因为它们是从现有设备中提取的,并限制在相似的尺寸和配置范围内。仿真结果表明,无论激励类型如何,非线性收集器产生的功率水平都不会高于其线性对应物。此外,非线性效应仅在高加速度水平下才会出现。本文还指出了收集器在受到实际振动时的一些设计关注点。