激光光电池无线能量传输研究

Wang Xin, Li Bin, Sun Li-Jie, Shi Xianglei, Wang Xun-chun
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引用次数: 0

摘要

利用激光发电的光伏电池以光代替电传输电能,可以保证SAR卫星在特殊工作条件下的能量供应。研究了高效率、高开路电压的三结砷化镓激光电池。通过调整电池的窗口层、发射区、栅格线和抗反射,降低表面复合率和反射,从而提高吸收率和电流密度。为了适应激光器的特点,解决子单元的匹配问题,设计了宽带隙AlGaAs/GaInP隧道结。测试了激光光伏电池在808nm激光照射下的IV曲线。在0.67W/cm2光强下,开路电压3.25V,转换效率53.6%。通过对新型多结激光光伏电池的研究,SAR卫星和其他航天器在太阳能电池阵不能工作时有了更多的能源供应选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Photovoltaic Cells for Laser Light on wireless energy transmission
Photovoltaic cells generating electricity by laser can be used to transmit power by light instead of electricity, which can guarantee the energy supply of SAR satellites under special working conditions. This paper studied high efficiency and high open voltage three-junction GaAs laser cells. Cell's window layer, emission region, grid line and antireflection were adjusted to reduce the surface recombination rate and reflex, in order to increase the absorption rate and the current density. Broadband gap AlGaAs/GaInP tunnel junction was designed to adapt the characteristics of the laser and solve the match problem of sub-cell. The IV curve of the laser photovoltaic cell was tested under 808nm laser irradiation. The open-circuit voltage and conversion efficiency are 3.25V and 53.6% under 0.67W/cm2 light intensity. Through research on new multi-junction laser photovoltaic cells, SAR satellites and other spacecrafts have more options for their energy supply when solar arrays don't work.
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