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Renewable energy harvesting and absorbing via multi-scale metamaterial systems for Internet of things

机译:通过用于物联网的多尺度超材料系统收集和吸收可再生能源

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摘要

Natural and human environments are abundant of unused renewable energy such as mechanical energy, acoustic energy, electromagnetic energy, thermal energy, etc. The idea of designing multi-scale metamaterials with super-normal functions on energy manipulation is utilized in multi-field renewable energy harvesting and absorbing. The metamaterials are able to enhance the local energy density by confining and focusing the energy before it to be harvested, leading to remarkable improvement of the output power and conversion efficiency. Leveraging the multi-scale metamaterials for renewable energy harvesting is an emerging direction to exploit the excess energy in the natural and man-made environments. This paper provides a brief overview of the studies published over the past decade on mechanical, acoustic, electromagnetic and thermal energy harvesting using the relevant metamaterials. The goal is to spark the interest of new investigators to this unconventional but fast-evolving branch of energy harvesting that will impact the Internet of things, smart cities and sustainable developments.
机译:自然和人类环境中有大量未使用的可再生能源,例如机械能,声能,电磁能,热能等。在多领域可再生能源中采用了设计具有超常功能的多尺度超材料的想法收获和吸收。超材料可以通过在收集能量之前限制并集中能量来提高局部能量密度,从而显着提高输出功率和转换效率。利用多尺度超材料进行可再生能源的收集,是在自然和人为环境中开发多余能量的新兴方向。本文简要概述了过去十年中使用相关超材料收集的有关机械,声,电磁和热能收集的研究。目的是激发新的研究人员对这个非常规但快速发展的能量收集分支的兴趣,这将影响物联网,智慧城市和可持续发展。

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