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Magnetic force analysis and performance of a tri-stable piezoelectric energy harvester under random excitation

机译:随机激励下三稳态压电能收割机的磁力分析及性能

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Recently, harvesting energy from environment has attracted lots of researchers' interests. Ambient vibrations are deemed as a promising power supply since it can be found almost everywhere. Piezoelectric effect has been exploited to convert mechanical energy to electricity. Nonlinearity techniques are favorable for improving the performance of piezoelectric energy harvesters. This paper focuses on a tri-stable piezoelectric energy harvester (TPEH) with two fixed external magnets. The lumped-parameter method is used to investigate the large-amplitude and broadband voltage response. A method based on equivalent magnetizing current theory is first applied to calculate the magnetic force and the potential function with triple wells. We find that this calculation method for magnetic force is more applicable for different magnet intervals compared with the magnetic dipoles method used before. Once the system parameters are chosen appropriately, large amplitude interwell motion among three wells can be achieved. In our study, a filtered Gaussian noise within the frequency of 0-120 Hz is selected as harvester's excitation, which is similar with the realistic low-frequency vibration in environment. Simulation and experimental results demonstrate that the TPEH enhances the output voltage significantly compared to the conventional bi-stable piezoelectric energy harvester (BPEH). Also, the TPEH's frequency bandwidth is further broadened. Besides, it has been proved that the corresponding optimum magnet interval only changes slightly when the excitation intensity varies, therefore there is no need of adjusting the system parameters to meet practical conditions. (C) 2017 Elsevier Ltd All rights reserved.
机译:最近,从环境中收获能量吸引了许多研究人员的利益。环境振动被认为是有前途的电源,因为它几乎可以找到它。压电效应已被利用以将机械能转换为电力。非线性技术有利于提高压电能量收割机的性能。本文重点介绍了具有两个固定的外部磁体的三稳定压电能量收割机(TPEH)。 LumpEd参数方法用于研究大幅度和宽带电压响应。首先应用基于等效磁化电流理论的方法来计算三重井的磁力和电位功能。我们发现,与之前使用的磁性偶极物法相比,该计算方法更适用于不同的磁体间隔。一旦选择了系统参数,就可以实现三个孔之间的大幅度接口运动。在我们的研究中,选择了0-120 Hz频率内的过滤的高斯噪声作为收获机的激励,这与环境中的逼真的低频振动相似。模拟和实验结果表明,与传统的双稳态压电能量收割机(BPEH)相比,TPEH显着增强了输出电压。此外,TPEH的频率带宽进一步扩大。此外,已经证明,当激发强度变化时,相应的最佳磁体间隔仅略微发生变化,因此不需要调整系统参数以满足实际条件。 (c)2017年Elsevier Ltd保留所有权利。

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