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Hybrid-type (d(33) and d(31)) impact-based piezoelectric hydroelectric energy harvester for watt-level electrical devices

机译:混合型(d(33)和d(31))冲击式压电式水力发电设备,用于瓦特级电气设备

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Impact-based piezoelectric energy harvesters (PEHs) are used to generate electricity from pulse kinetic energy. Compared with operation in a single mode, utilizing both the d(31) and d(33) modes of the piezoelectric structure increases the power density of impact-based PEHs. In this study, a d(31) and d(33) hybrid-type impact-based PEH was designed and practically demonstrated as a power source for watt-level electrical devices requiring less than 10W. We presented more detailed FEM analysis of the d(31) and d(33) effect of secondary impacter. The numerical simulations results show the strains in 33-direction of piezoelectric material in presented system are larger than those from the conventional impact-type PEH. As a result, the presented system is expected to generate more power than the d(33) mode only PEH. The experimental results from a hydroelectric application consisting of a water turbine, 240 piezoelectric modules, and a multi-array rectifying circuit show that the peak output power generated from the hybrid-type impact-based PEH is 7.24 times higher than that of the conventional impact-type PEH. The proposed system was experimentally developed and it generates 20 V and 4.3 W of output power at optimum load conditions. Another advantage of the watt-level energy harvester is that no impedance matching circuit (such as buck-boost or flyback converter) is required; because the output matched impedance is very low i.e. 100 Omega. In experimentally demonstrated hydroelectric application conditions, the presented system was used as a direct power source to drive the 3.2W commercial LED bulb. The system efficiency and performance are evaluated, and overall power conversion efficiency of 4.1% is achieved. (C) 2016 Elsevier B.V. All rights reserved.
机译:基于冲击的压电能量收集器(PEH)用于从脉冲动能中发电。与以单一模式运行相比,利用压电结构的d(31)和d(33)模式均可提高基于冲击的PEH的功率密度。在这项研究中,d(31)和d(33)混合型基于冲击的PEH被设计并被实际证明是功率小于10W的瓦特级电气设备的电源。我们介绍了次级撞击器的d(31)和d(33)效应的更详细的有限元分析。数值模拟结果表明,所提出的系统中压电材料在33方向上的应变大于常规冲击型PEH的应变。结果,所提出的系统有望比仅d(33)模式的PEH产生更多的功率。由水轮机,240个压电模块和多阵列整流电路组成的水电应用的实验结果表明,基于混合型冲击的PEH产生的峰值输出功率是传统冲击的峰值功率的7.24倍型PEH。该系统是通过实验开发的,在最佳负载条件下可产生20 V和4.3 W的输出功率。瓦特级能量收集器的另一个优点是不需要阻抗匹配电路(例如降压-升压或反激转换器)。因为输出匹配阻抗非常低,即100Ω。在实验证明的水电应用条件下,提出的系统用作驱动3.2W商业LED灯泡的直接电源。对系统效率和性能进行了评估,获得了4.1%的整体电源转换效率。 (C)2016 Elsevier B.V.保留所有权利。

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