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Accurate opto-electrical modeling of multi-crystalline silicon wafer-based solar cells

机译:基于多晶硅晶片的太阳能电池的精确光电建模

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摘要

Modeling of multi-crystalline silicon solar cells has been recently widely used for fast and cost-effective performance improvements. The optimization of device performance requires deep understanding of the opto-electrical losses in a fabricated solar cell. To carry out trustworthy simulations for performance analysis and optimization, the simulation program has to be calibrated to the performance of the fabricated device. In this article an accurate opto-electrical modeling of multi-crystalline silicon solar cells is presented. Specific issues that arose during the calibration process were addressed, such as the optical model describing light scattering due to wafer texturing, the electrical modeling of heavily doped emitter and the opto-electrical modeling of the back surface field. Calibrated model parameters, obtained from theory or measurements, led to an excellent simultaneous matching between simulated and measured reflectance spectrum, internal and external quantum efficiencies and dark and illuminated current-voltage characteristics of the multi-crystalline silicon solar cells. In addition, opto-electrical losses in the investigated solar cells were determined and quantified.
机译:多晶硅太阳能电池的建模近来已被广泛用于快速且经济高效的性能改进。器件性能的优化需要深入了解制造的太阳能电池中的光电损耗。为了进行可信赖的仿真以进行性能分析和优化,必须根据所制造设备的性能校准仿真程序。本文介绍了多晶硅太阳能电池的精确光电模型。解决了在校准过程中出现的特定问题,例如描述了由于晶片纹理化而导致的光散射的光学模型,重掺杂发射极的电模型以及背面场的光电模型。从理论或测量中获得的校准模型参数,可在模拟和测量的反射光谱,内部和外部量子效率以及多晶硅太阳能电池的暗和照亮电流-电压特性之间实现出色的同时匹配。另外,确定并量化了所研究的太阳能电池中的光电损耗。

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