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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Modeling and experimental analysis of an antagonistic energy conversion using dielectric electro-active polymers
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Modeling and experimental analysis of an antagonistic energy conversion using dielectric electro-active polymers

机译:使用介电电活性聚合物进行对抗性能量转换的建模和实验分析

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Dielectric Electro Active Polymers (DEAP) have shown potential features to be applied into the wave energy harvesting purpose. However, current studies of DEAP in generator mode have not sufficiently provided perfect solutions for practical applications. This paper gives a detailed analysis on an antagonistic energy converter (AEC) using two DEAP generators for wave energy application. Firstly, an accurate model of conventional DEAF generator is investigated and compared with that of Neo-Hookean model. Then, the new AEC structure, which consists of two DEAPs in antagonistic connection mode to increase the harvested energy, is introduced. Elastic forces in relaxation phase of one DEAPs are employed to stretch the remained DEAP. Consequently, the required input mechanical energy for each DEAP in AEC is lower than one of conventional DEAP generator. A physical model DEAP generator is also developed for practical operating conditions. Here, electromechanical model of proposed structure is investigated to analyze the performance of the proposed structure. Finally, experiments have been carried out to investigate the performance of the AEC and energy conversion processes. Favorable results e.g. the good agreement between experiments and the modeling results, significant higher energy harvesting efficiency, compact design, and smoother output energy waveforms show great potential to apply the new AEC in real wave energy application. (C) 2014 Elsevier Ltd. All rights reserved.
机译:介电活性聚合物(DEAP)已显示出潜在的特征,可用于波浪能的收集。然而,目前在发电机模式下对DEAP的研究还不足以为实际应用提供完美的解决方案。本文对使用两个DEAP发生器的波能能量对抗性能量转换器(AEC)进行了详细分析。首先,研究了传统DEAF发生器的精确模型,并将其与Neo-Hookean模型进行了比较。然后,介绍了一种新的AEC结构,该结构由两个处于敌对连接模式的DEAP组成,以增加收获的能量。一个DEAP松弛阶段的弹力用于拉伸剩余的DEAP。因此,AEC中每个DEAP所需的输入机械能都低于常规DEAP发生器之一。还针对实际运行条件开发了物理模型DEAP生成器。在此,研究了所提出结构的机电模型,以分析所提出结构的性能。最后,进行了实验以研究AEC和能量转换过程的性能。良好的结果,例如实验与建模结果之间的良好一致性,明显更高的能量收集效率,紧凑的设计以及更平滑的输出能量波形显示出将新AEC应用于实际波能应用的巨大潜力。 (C)2014 Elsevier Ltd.保留所有权利。

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