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Evolutionary design algorithm for optimal light trapping in solar cells

机译:太阳能电池中最佳光捕获的进​​化设计算法

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摘要

Light scattering at rough interfaces is a standard approach to enhance absorption of light in the absorber layers of solar cells due to light trapping. In this work, an automata optimization algorithm, based on the Constructal Theory, is proposed for the heuristic geometric design to enhance light trapping of silicon solar cell surface textures. Surface textures were investigated computationally for light absorption of a normally incident simulated solar spectrum, under constraints of transverse area of the texture. The photogenerated current density was calculated for textures to estimate light trapping. In the automata optimization, Elemental Constructals, consisting of dielectric material blocks, were assembled on top of the solar cell forming a texture. Three variations of the proposed automata algorithm were tested and their capabilities were determined. The best result for this optimization was a photocurrent J = 17.48 mA/cm(2) for grid periodicity above the wavelength and J = 18.31 mA/cm(2) for grid periodicity in the sub-wavelength range. The evolutionary algorithm was also applied to assemble a periodic-disordered texture from fixed shape gratings to better harness incident light. Different textures with fixed shapes of gratings had been investigated to determine optimal geometric parameters. Optimized triangular, trapezoidal, and rounded-tip textures achieved the best results in this phase and were implemented to assemble the periodic-disordered texture which reached J = 19.75 mA/cm(2) for triangular gratings. Results found with this pristine evolutionary algorithm corroborate its efficiency in finding, practically, geometries that lead to greater light absorption with a minimum amount of dielectric materials. Published under license by AIP Publishing.
机译:在粗糙界面处的光散射是一种增强光吸收的方法,可增强光在太阳能电池吸收层中的吸收。在这项工作中,提出了一种基于构造理论的自动机优化算法,用于启发式几何设计,以增强硅太阳能电池表面纹理的光捕获能力。在纹理的横向区域的约束下,对表面纹理进行了计算研究,以吸收法线入射的模拟太阳光谱的光。计算纹理的光生电流密度以估计光捕获。在自动机优化中,由介电材料块组成的基本构造物被组装在太阳能电池的顶部,形成纹理。测试了提出的自动机算法的三个变体,并确定了它们的功能。此优化的最佳结果是,对于高于波长的栅极周期性,光电流J = 17.48 mA / cm(2),对于低于亚波长范围的栅极周期性,光电流J = 18.31 mA / cm(2)。进化算法还被用于从固定形状的光栅中组装周期性无序的纹理,以更好地利用入射光。研究了具有固定形状的光栅的不同纹理,以确定最佳的几何参数。优化的三角形,梯形和圆角纹理在此阶段获得了最佳结果,并实现了组装周期性无序纹理,对于三角形光栅,其达到J = 19.75 mA / cm(2)。用这种原始的进化算法发现的结果证实了它的效率,实际上是发现了几何形状,该几何形状可以用最少的介电材料来导致更大的光吸收。由AIP Publishing授权发布。

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  • 来源
    《Journal of Applied Physics》 |2019年第4期|043105.1-043105.16|共16页
  • 作者单位

    Univ Fed Rio Grande, Programa Posgrad Modelagem Computac, PPGMC, Av Italia,Km 8,Campus Carreiros, BR-96203900 Rio Grande, RS, Brazil;

    Univ Fed Pelotas, Dept Fis, IFM, CCAF, Campus Capao Leao,Caixa Postal 354, BR-96010970 Pelotas, RS, Brazil;

    Univ Fed Rio Grande, Programa Posgrad Modelagem Computac, PPGMC, Av Italia,Km 8,Campus Carreiros, BR-96203900 Rio Grande, RS, Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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