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DOI10.1016/j.nanoen.2018.12.052
Natural wind-driven ultra-compact and highly efficient hybridized nanogenerator for self-sustained wireless environmental monitoring system
Rahman, M. Toyabur; Salauddin, Md; Maharjan, P.; Rasel, M. S.; Cho, Hyunok; Park, Jae Yeong
发表日期2019
ISSN2211-2855
EISSN2211-3282
卷号57页码:256-268
英文摘要

Owing to the climate change and energy crisis, harvesting energy from our surroundings and the construction of self-powered wireless environmental monitoring systems are promising approaches in modern times. In this paper, an ultra-compact highly efficient miniaturized windmill comprising a hybridized nanogenerator (MW-HNG) is reported based on three conversion mechanisms i.e. triboelectric nanogenerator (TENG), piezoelectric nanogenerator (PENG), and electromagnetic generator (EMG). The MW-HNG is designed as a 3D-printed fully-enclosed structure for the natural wind energy harvesting by converting into rotational motion: all harvesting units reside in a common rotation system to effectively and simultaneously produce electricity. At a wind speed of 6 m/s, the flexible-blade-based hybridization-mode (contact-lateral sliding-separation-contact) TENG and coupled PENG can generate maximal power values of 1.67 mW and 1.38 mW at optimal load resistances of 10 M Omega and 330 K Omega, respectively. In contrast, the multipole-magnet-based EMG can obtain a maximal output power of 268.6mW at 180 Omega. The MW-HNG demonstrates a quick charging ability for capacitors and the capability to feed hundreds of LEDs. Further, a self-powered wireless sensor system is developed for real-time environmental monitoring by combining an MW-HNG, a customized power management circuit, and wireless sensor unit (a smartphone to display sensor data). Our proposed MW-HNG is suitable for self-powered wireless sensor networks (WSNs) in the subway system by generating high-power electrical output from moving-induced wind mechanical energy.


WOS研究方向Chemistry ; Science & Technology - Other Topics ; Materials Science ; Physics
来源期刊NANO ENERGY
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/94468
作者单位Kwangwoon Univ, Dept Elect Engn, Seoul 139701, South Korea
推荐引用方式
GB/T 7714
Rahman, M. Toyabur,Salauddin, Md,Maharjan, P.,et al. Natural wind-driven ultra-compact and highly efficient hybridized nanogenerator for self-sustained wireless environmental monitoring system[J],2019,57:256-268.
APA Rahman, M. Toyabur,Salauddin, Md,Maharjan, P.,Rasel, M. S.,Cho, Hyunok,&Park, Jae Yeong.(2019).Natural wind-driven ultra-compact and highly efficient hybridized nanogenerator for self-sustained wireless environmental monitoring system.NANO ENERGY,57,256-268.
MLA Rahman, M. Toyabur,et al."Natural wind-driven ultra-compact and highly efficient hybridized nanogenerator for self-sustained wireless environmental monitoring system".NANO ENERGY 57(2019):256-268.
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