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Advanced Photovoltaic Power System Development at the U.S. Air Force Research Laboratory

机译:美国空军研究实验室的先进光伏电力系统开发

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Photovoltaics continue to be the primary source of electrical power for most near-Sun space missions. The desire to enhance or enable new space missions through higher efficiency, increased specific power (W/kg), increased volumetric power density (W/m3) and improved radiation resistance, along with decreased costs, continues to push the development of novel solar cell and array technologies. To meet present and future space power requirements, advanced multijunction solar cells and novel cell technologies are being pursued. These efforts have resulted in a continual advancement in performance, but new paradigms will be required to continue that performance trend. Similarly, new array technologies are being investigated and developed to meet the ever increasing power system performance requirements.
机译:光伏电压继续成为大多数近日空间任务的电力电力源。通过更高效率,增加的特定功率(W / kg),增加的容积功率密度(W / M3)以及改善的抗辐射阻力,以及降低成本,渴望增强或实现新的空间任务的愿望继续推动新颖的太阳能电池的开发和阵列技术。为了满足现在和未来的空间功率要求,正在追求先进的多结太阳能电池和新颖的细胞技术。这些努力导致了绩效的持续发展,但新的范式将需要继续进行绩效趋势。同样,正在调查和开发新的阵列技术,以满足不断增加的电力系统性能要求。

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