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Optimizing the Front Electrode of Silicon-Wafer-Based Solar Cells and Modules

机译:优化基于硅晶片的太阳能电池和组件的前电极

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摘要

Front electrode optimization is one of the important design considerations that affects the efficiency of a silicon wafer solar cell. The optimization of the front electrode is usually done to maximize cell efficiency at standard test conditions (STC). However, with increasing prices in silver, optimization of the front electrode should be done by taking into account the cost of the silver paste. In this study, optimization of the front electrode is done at the cell level at STC (dollars per watt peak), module level at STC (dollars per watt peak), and under real-world module conditions (dollars per kilowatthour), taking into account the cost of the silver paste. For commercial screen-printed multicrystalline silicon wafer solar cells, it is found that to achieve the most cost-effective cell design at the outdoor module level (dollars per kilowatthour), the number of front metal fingers can be strongly reduced (by more than 20) compared with a conventional cell design, which is maximized for STC cell efficiency. For silver price of $1286/kg, optimization at the cell and module level for lowest cost will yield up to 1% cost savings compared with optimization for maximum efficiency. Optimization for the lowest levelized cost of electricity (LCOE) will yield on average 0.6% lower LCOE compared with optimization for maximum annual energy output.
机译:前电极优化是影响硅晶片太阳能电池效率的重要设计考虑因素之一。通常会进行前电极的优化,以在标准测试条件(STC)下最大化电池效率。但是,随着白银价格的上涨,应该通过考虑银浆的成本来优化前电极。在这项研究中,前电极的优化是在STC的电池水平(每瓦峰值美元),STC的模块水平(每瓦峰值美元)以及实际模块条件(每千瓦小时美元)下进行的,记下银浆的成本。对于商用丝网印刷的多晶硅晶片太阳能电池,发现要在室外模块级别(美元/千瓦时)实现最具成本效益的电池设计,可以大大减少前金属指的数量(减少20多个) )与传统的电池设计相比,后者的STC电池效率最高。对于每公斤1286美元的白银价格,在电池和模块级别进行最低成本的优化,与实现最高效率的优化相比,最多可节省1%的成本。与最低的年度能源输出的优化相比,最优化的最低电力成本(LCOE)可使LCOE平均降低0.6%。

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