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Bifacial potential of single- and double-sided collecting silicon solar cells

机译:单面和双面收集硅太阳能电池的双面电位

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Bifacial applications are a promising way to increase the performance of photovoltaic systems. Two silicon solar cell concepts suitable for bifacial operation are the passivated emitter, rear totally diffused (PERT) and the both sides collecting and contacted (BOSCO) cell concepts. This work investigates the bifacial potential of these concepts by means of in-depth numerical device simulation and experiment with a focus on the impact of varying material quality. It is shown that the PERT cell concept (representing a structure with front-side emitter only) requires high-minority-carrier-diffusion-length substrates with L-bulk > 3 x W (with cell thickness W) to exploit its bifacial potential, while the BOSCO cell (representing a structure with double-sided emitter) can already utilise its bifacial potential on substrates with significantly lower diffusion lengths down to L-bulk approximate to 0.5 x W. Experimentally, BOSCO cells with and without activated rear-side emitter are compared. For rear-side illumination, the activated rear-side emitter is measured to increase internal quantum efficiency at wavelengths lambda < 850 nm by up to 45%(abs) (factor of 9) and 30%(abs) (factor of 2) for cells processed on p-type multicrystalline silicon substrates with L-bulk approximate to 0.3 x W and L-bulk approximate to 2.6 x W, respectively. For PERT cells processed on n-type Czochralski-grown silicon substrates, an according increase in internal quantum efficiency for rear-side illumination of more than 20%(abs) (factor of 1.3) is measured when changing from a substrate with L-bulk approximate to 3.0 to 10.0 x W. The performed simulations and experiments demonstrate that the BOSCO cell concept is a promising candidate to successfully exploit bifacial gain also on low- to medium-diffusion-length substrates such as p-type multicrystalline silicon, while PERT cells require a high-diffusion- length substrate to utilise their bifacial potential. Furthermore, the BOSCO cell concept is shown to be a promising option to achieve highest output power densities, even when using lower quality and therefore possibly more cost-effective silicon substrates. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:双面应用是提高光伏系统性能的一种有前途的方法。适于双面操作的两种硅太阳能电池概念是钝化发射极,背面全扩散(PERT)和两面收集和接触(BOSCO)电池概念。这项工作通过深入的数值设备模拟和实验来研究这些概念的两面性潜力,并着重于变化的材料质量的影响。结果表明,PERT电池概念(仅表示正面发射器的结构)需要L-bulk> 3 x W(电池厚度W)的高少数族裔载流子扩散长度的基板,以利用其双面电势,而BOSCO电池(代表带有双面发射器的结构)已经可以利用其在低扩散长度(低至L-bulk大约为0.5 x W)的扩散衬底上的双面电位。在实验中,带有和不带有激活后侧发射器的BOSCO电池比较。对于后侧照明,经测量,激活的后侧发射器可将λ<850 nm波长处的内部量子效率提高多达45%(abs)(9的因子)和30%(abs)(2的因子)。在p型多晶硅衬底上处理的单元,L-bulk分别约为0.3 x W,L-bulk约为2.6 xW。对于在n型切克劳斯基生长的硅基板上处理的PERT电池,从带有L体的基板更换时,测量到的背面照明内部量子效率的相应增加幅度超过20%(abs)(1.3倍)。大约为3.0至10.0 xW。进行的仿真和实验表明,BOSCO电池概念是成功地在低至中扩散长度的衬底(例如p型多晶硅)上成功利用双面增益的有前途的候选者,而PERT电池需要高扩散长度的底物以利用其双面电势。此外,BOSCO电池概念被证明是实现最高输出功率密度的一种有前途的选择,即使使用质量较低且因此可能更具成本效益的硅基板时也是如此。版权所有(C)2016 John Wiley&Sons,Ltd.

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