首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2014 >ROBUST DESIGN OF HIGH-PERFORMANCE TRANSPARENT SOLAR CELL STRUCTURE CONSIDERING NATURAL SUNLIGHT ILLUMINATION
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ROBUST DESIGN OF HIGH-PERFORMANCE TRANSPARENT SOLAR CELL STRUCTURE CONSIDERING NATURAL SUNLIGHT ILLUMINATION

机译:考虑自然光照射的高性能透明太阳能电池结构的稳健设计

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Transparent organic solar cells have recently attracted extensive interest considering their potential application for the power-generating window. By allowing the transmission of visible light while converting ultraviolet and near infrared light in the solar spectrum into electricity, transparent solar cells integrated into building facade provide a smart solution to the energy dilemma in urban area. However, current works mainly optimize the performance of solar cells for very limited incident condition, such as only considering normal incidence, which results in impractical designs for real applications. In this paper, we propose a robust design approach to achieve high-performance transparent solar cell based on a non-periodic photonic structure considering a broad range of incident conditions representing natural sunlight illumination. Statistical performances are used in the robust design formulation and efficient sampling techniques are further employed to improve the computational efficiency. The Pareto-optimal solutions are obtained according to the multicriteria preference with respect to maximizing the expected cell transparency and the expected energy conversion efficiency, and minimizing the performance variance due to the incidence variation. As one example of the optimized design, the absorbing efficiency of the solar cell could be up to 85% that of its opaque counterpart with 32% visible light transmission and 0.13% variation coefficient of transparency under the actual solar illumination and incident angles from 9am to 3pm. By using this design methodology, practically efficient cell structure is achieved based on the location and installation orientation of the solar window.
机译:考虑到透明有机太阳能电池在发电窗口中的潜在应用,近来引起了广泛的兴趣。通过允许可见光传输,同时将太阳光谱中的紫外线和近红外光转换为电能,集成到建筑物立面中的透明太阳能电池为解决城市地区的能源难题提供了一种明智的解决方案。但是,当前的工作主要是在非常有限的入射条件下(例如仅考虑垂直入射)优化太阳能电池的性能,这导致实际应用中的设计不切实际。在本文中,我们提出了一种鲁棒的设计方法,以考虑到代表自然日光照明的入射条件的广泛变化,基于非周期性光子结构实现高性能透明太阳能电池。稳健的设计公式中使用了统计性能,并且进一步采用了有效的采样技术来提高计算效率。根据多准则偏好,获得帕累托最优解,以最大化预期的电池透明度和预期的能量转换效率,并最小化由于入射变化而导致的性能差异。作为优化设计的一个例子,太阳能电池的吸收效率可以达到不透明对应电池的吸收效率的85%,可见光透射率是32%,在实际太阳光照和入射角从上午9点到晚上9点之间,透明度的变化系数为0.13%。下午三点通过使用这种设计方法,可以根据太阳能窗户的位置和安装方向获得实用有效的电池结构。

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