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首页> 外文期刊>Journal of Electronic Materials >The Performance of Silicon Solar Cells Exposed to a Simulated Low Earth Orbit Plasma Environment: Laboratory Ground Tests
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The Performance of Silicon Solar Cells Exposed to a Simulated Low Earth Orbit Plasma Environment: Laboratory Ground Tests

机译:暴露于模拟低地球轨道等离子体环境的硅太阳能电池的性能:实验室地面测试

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We have studied the effects of a low earth orbit (LEO) plasma environment on the performance of solar cells. Laboratory ground tests were used to simulate the properties of a low-energy LEO plasma. A Penning plasma source was used to generate plasma from an argon (Ar) gas flow at low pressure (similar to 10(-5) torr) through a vacuum chamber. Diagnostic tools were used to investigate the plasma conditions and their effects on six silicon (Si) solar cells located in the chamber. Alternating current conditions for both biased and unbiased monocrystalline Si solar cells produced from n/p terrestrial cells with deep junctions were investigated after exposure to plasma fluence for different times up to 14 h. The results obtained confirmed variation of the performance of the cells samples as a consequence of exposure to the plasma.
机译:我们已经研究了低地球轨道(LEO)等离子体环境对太阳能电池性能的影响。实验室地面测试用于模拟低能LEO等离子体的特性。潘宁等离子体源用于通过低压真空室(类似于10(-5)托)从氩(Ar)气流产生等离子体。使用诊断工具来研究等离子体条件及其对位于室内的六个硅(Si)太阳能电池的影响。在暴露于等离子体能量通量下长达14小时后,研究了由具有深结的n / p陆地电池产生的偏置和无偏置单晶硅太阳能电池的交流条件。获得的结果证实了由于暴露于血浆而导致的细胞样品性能的变化。

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