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In-Out Cylindrical Triboelectric Nanogenerators Based Energy Harvester

机译:基于进出圆柱摩擦纳米发电机的能量收集器

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摘要

The arising need for self-powered devices have driven the research towards new energy harvesting techniques, especially the mechanical energy. Triboelectric nanogenerators (TENGs) are considered a very promising technique for harvesting mechanical energy. However, most of the studies in the literature have been focusing on rectangular TENGs with with a scarce research in cylindrical configurations. In this paper, a novel In-Out cylindrical TENG mode is proposed to serve as a potential candidate for different applications. A FEM model is constructed using COMSOL-Multiphysics to characterize the device intrinsic properties such as open circuit voltage Voc(x) and short circuit charges Qsc(x). Furthermore, an analytical model is developed to obtain a closed form (V-Q-x) relation with its accuracy validated against the FEM model. The results show an excellent agreement with an average error of 5.2% due to FEM limitations, which was a motivation for establishing a Verilog-A model as a circuit element to describe the mode's behavior under different loading conditions and explore its ability to be integrated into different applications.
机译:对自供电设备的需求不断增长,推动了对新能源收集技术(尤其是机械能)的研究。摩擦电纳米发电机(TENGs)被认为是一种非常有前途的技术,可用来收集机械能。但是,文献中的大多数研究都集中在矩形TENG上,而对圆柱结构的研究却很少。在本文中,提出了一种新颖的In-Out圆柱TENG模式,以作为不同应用的潜在候选者。使用COMSOL-Multiphysics构建FEM模型以表征器件的固有特性,例如开路电压V oc (x)和短路电荷Q sc (X)。此外,开发了一种分析模型来获得封闭形式(V-Q-x)关系,并针对FEM模型验证了其准确性。结果表明,由于有限元法的限制,平均误差为5.2%,这是一个很好的一致性,这是建立Verilog-A模型作为电路元件的动机,以描述该模式在不同负载条件下的行为,并探索将其集成到其中的能力。不同的应用程序。

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