The Design and Development of Woven Textile Solar Panels.

The Design and Development of Woven Textile Solar Panels.
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DOI:
10.3390/ma16114129
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发表时间:
2023-06-01
期刊:
影响因子:
3.4
通讯作者:
Hughes-Riley, Theodore
Hughes-Riley, Theodore
中科院分区:
材料科学3区
文献类型:
--
作者:
Abeywickrama, Neranga;Kgatuke, Matholo;Marasinghe, Kalana;Nashed, Mohamad Nour;Oliveira, Carlos;Shahidi, Arash M.;Dias, Tilak;Hughes-Riley, Theodore

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在过去的几年中,人们一直在寻找替代电源来补充或取代电子纺织品和可穿戴应用的电池,其中可穿戴太阳能收集系统的开发获得了极大的兴趣。在之前的出版物中,作者报道了一种新的概念,即通过将微型太阳能电池嵌入纱线的纤维中(太阳能电子纱线)来制作能够收集太阳能的纱线。本出版物的目的是报告大面积纺织太阳能电池板的开发。本研究首先对太阳能电子纱线进行了表征,然后分析了将太阳能电子纱线织成双层织物后的性能;作为本研究的一部分,探讨了不同包覆经纱数对嵌入式太阳能电池性能的影响。最后,构建了一个较大的纺织太阳能电池板(510 mm × 270 mm),并在不同光照强度下进行了测试。观察到在晴天(在99,000勒克斯照明条件下)可以收获PMAX = 335.3 ± 22.4mW的能量。
Over the past few years, alternative power supplies to either supplement or replace batteries for electronic textile and wearable applications have been sought, with the development of wearable solar energy harvesting systems gaining significant interest. In a previous publication the authors reported a novel concept to craft a yarn capable of harvesting solar energy by embedding miniature solar cells within the fibers of a yarn (solar electronic yarns). The aim of this publication is to report the development of a large-area textile solar panel. This study first characterized the solar electronic yarns, and then analyzed the solar electronic yarns once woven into double cloth woven textiles; as part of this study, the effect of different numbers of covering warp yarns on the performance of the embedded solar cells was explored. Finally, a larger woven textile solar panel (510 mm × 270 mm) was constructed and tested under different light intensities. It was observed that a PMAX = 335.3 ± 22.4 mW of energy could be harvested on a sunny day (under 99,000 lux lighting conditions).
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