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A Solar-Radiation-Powered Thermoelectric Energy Harvester based on Quasicrystal

机译:基于准晶体的太阳能辐射热电能量采集器

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Energy harvesting is an important research area of the Internet of Things (IoT), mainly in the so-called Internet of Natural Things (IoNT), which is an IoT technique applied to things found in the nature like trees, rocks, and animals that need to be powered by environmentally available energy. Among several energy harvesting solutions, the thermoelectric-based energy harvester is a very promising one and it is generally based on semiconductor-based thermoelectric generators (TEGs) where the output electric voltage is proportional to the applied temperature gradient on them. However, the most important natural energy source is the solar radiation that, when incident in a surface, warms it and, as a result, the surface achieves a homogeneous temperature, turning the TEG useless since temperature gradient is zero. A possible solution for thermoelectric energy harvesting directly from solar radiation is to provide a way to selectively absorb solar radiation using different surfaces with adequate properties to obtain a temperature gradient. In this paper, a solar-radiation-powered thermoelectric energy harvester is proposed. The proposed harvester is based on the use of a new kind of material, called quasicrystals, to build selective solar absorbers, therefore allowing energy harvesting directly from solar radiation. Experimental results show that the proposed system is capable of effective generation of electrical energy.
机译:能量收集是物联网(IoT)的重要研究领域,主要是在所谓的自然物联网(IoNT)中,这是一种IoT技术,适用于自然界中发现的树木,岩石和动物等需要由环保能源提供动力。在几种能量收集解决方案中,基于热电的能量收集器是一种非常有前途的解决方案,它通常基于基于半导体的热电发生器(TEG),其中输出电压与施加在其上的温度梯度成比例。但是,最重要的自然能源是太阳辐射,当太阳辐射入射到表面时会加热它,结果,表面达到均匀的温度,由于温度梯度为零,因此TEG变得无用。直接从太阳辐射中收集热电能量的可能解决方案是提供一种使用具有适当特性的不同表面选择性地吸收太阳辐射以获得温度梯度的方法。本文提出了一种以太阳辐射为动力的热电能量收集器。拟议中的收割机是基于使用一种称为准晶体的新型材料来构建选择性太阳能吸收器的,因此可以直接从太阳辐射中收集能量。实验结果表明,所提出的系统能够有效地产生电能。

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