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Loss analysis of back-contact back-junction thin-film monocrystalline silicon solar cells

机译:背接触背结薄膜单晶硅太阳能电池的损耗分析

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摘要

We investigate power losses in back-contact back-junction monocrystalline thin-film silicon solar cells fabricated using the porous silicon layer transfer process. Our loss analysis combines two-dimensional finite element modeling and resistance network simulations. The input parameters of the finite element modeling are determined experimentally by measuring saturation current densities and sheet resistances on test samples prepared identically to the solar cells. Characteristic solar cell parameters such as short circuit current, open circuit voltage, fill factor, and efficiency of measured and network simulated current voltage characteristics investigated in this study match within an uncertainty of 5%. Free energy loss analysis serves as comparison of all losses in units of power per area at the maximum power point. The largest loss is bulk recombination due to a carrier lifetime of 2 μs in the epitaxial Si layer. Further significant losses result from recombination at the base contacts characterized by a diode saturation current density of 50 000 fA cm~(-2) as well as resistive losses due to lateral majority carrier current flows within the solar cell base and contact resistance losses.
机译:我们调查了使用多孔硅层转移工艺制造的背接触背结单晶薄膜硅太阳能电池的功率损耗。我们的损耗分析结合了二维有限元建模和电阻网络仿真。有限元建模的输入参数通过测量饱和电流密度和与太阳能电池完全相同的测试样品上的薄层电阻来实验确定。这项研究中研究的太阳能电池特征参数(例如短路电流,开路电压,填充因数以及实测和网络模拟电流电压特性的效率)在5%的不确定性内匹配。自由能量损耗分析可用来比较最大功率点处每单位面积的功率损耗。最大的损耗是由于外延Si层中载流子寿命为2μs而导致的体复合。由于在基极触点处的重组(其特征在于二极管饱和电流密度为50000 fA cm〜(-2))以及由于横向多数载流子电流在太阳能电池基极内流动引起的电阻损耗和接触电阻损耗,进一步造成了显着损耗。

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  • 来源
    《Journal of Applied Physics》 |2011年第12期|p.124510.1-124510.9|共9页
  • 作者单位

    Institute for Solar Energy Research Hamelin (ISFH), Am Ohrberg 1, 31860 Emmerthal, Germany;

    Institute for Solar Energy Research Hamelin (ISFH), Am Ohrberg 1, 31860 Emmerthal, Germany;

    Institute for Solar Energy Research Hamelin (ISFH), Am Ohrberg 1, 31860 Emmerthal, Germany,Now with University of Konstanz, Universitaetsstr. 10, 78464 Konstanz,Germany.;

    Institute for Solar Energy Research Hamelin (ISFH), Am Ohrberg 1, 31860 Emmerthal, Germany;

    Institute for Solar Energy Research Hamelin (ISFH), Am Ohrberg 1, 31860 Emmerthal, Germany,Now with Siemens AG, Hugo-Junkers-Str. 15.17,90411 Nuremberg, Germany.;

    Institute for Solar Energy Research Hamelin (ISFH), Am Ohrberg 1, 31860 Emmerthal, Germany,Institute for Solid State Physics, Leibniz Universitdt Hannover, Appelstrasse 2, 30167 Hannover, Germany;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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