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Simulation of high-efficiency n/sup +/p indium phosphide solar cell results and future improvements

机译:高效n / sup + / p磷化铟太阳能电池的仿真结果和未来的改进

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A simulation of the highest efficiency (19.1% AMO) n/sup +/p indium phosphide (InP) solar cell was made using a computer code PC-1D in order to understand it and suggest future improvements to it. Available cell design and process data was used in the simulation. Minority carrier diffusion lengths in the emitter and base have been varied to match the experimental cell I-V characteristics with the calculated results. To further understand and improve the InP cell efficiency, simulations were performed using improved values of cell material and process parameters. We show that the efficiency of this cell could be increased to more than 23% AMO by incorporating the suggested cell material, design and process improvements. At these high efficiencies InP cell technology will be very attractive for space use.
机译:为了理解并建议未来的改进,使用计算机代码PC-1D对最高效率(19.1%AMO)n / sup + / p磷化铟(InP)太阳能电池进行了仿真。模拟中使用了可用的电池设计和过程数据。发射极和基极中的少数载流子扩散长度已经改变,以使实验电池的I-V特性与计算结果相匹配。为了进一步了解和提高InP电池效率,使用了改进的电池材料值和工艺参数进行了仿真。我们显示通过合并建议的电池材料,设计和工艺改进,该电池的效率可以提高到23%以上的AMO。在如此高的效率下,InP电池技术对于空间使用将非常有吸引力。

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