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Flexible, Lightweight, Amorphous Silicon Based Solar Cells on Polymer Substrate for Space and Near-Space Applications

机译:基于柔性的轻质,非晶硅基于聚合物基板的太阳能电池,用于空间和近空间应用

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United Solar Ovonic has leveraged its history of making amorphous silicon solar cells on stainless steel substrates to develop amorphous silicon alloy (a-Si:H)-based solar cells and modules on ~25 μm thick polymer substrate using high-throughput roll-to-roll deposition technology for space and near-space applications. The solar cells have a triple-junction a-Si:H/a-SiGe:H/a-SiGe:H structure deposited by conventional plasma enhanced CVD (PECVD) using roll-to-roll processing. The cells have distinct advantages in terms of high specific power (W/kg), high flexibility, ruggedness, rollability for stowage, and irradiation resistance. The large area (23.9 cm × 32.1 cm) individual cells manufactured in large quantity can be readily connected into modules and have achieved initial, 25 °C, AMO aperture-area efficiency of 9.8% and initial specific power of 1200 W/kg. We have conducted light-soak studies and measured the temperature coefficient of the current-voltage characteristics to determine the stable values at an expected operating temperature of 60°C. The stable total-area efficiency and specific power at 60 °C are 7.2% and 950 W/kg, respectively. In this paper, we review the challenges and progress made in development of the cells, highlight some applications, and discuss current efforts aimed at improving performance.
机译:联合太阳能奥沃尼克利用其在不锈钢基板上制造无定形硅太阳能电池的历史发展非晶硅合金(的a-Si:H)基太阳能电池和组件上〜25微米厚的聚合物基底使用高通量卷对卷沉积技术,空间和近空间应用。所述太阳能电池具有三结的a-Si:H /的a-SiGe:H /的a-SiGe:通过使用辊到辊处理常规的等离子体增强CVD(PECVD)沉积的ħ结构。将细胞在高比功率方面具有明显的优势(W / kg)的,高弹性,耐用性,轧制性配载,和耐辐射性。大面积(23.9厘米*32.1厘米)在大量制造的单个细胞可容易地连接到模块中,并取得了9.8%的初始,25°C,AMO孔径面积效率和1200瓦/千克的初始比功率。我们已经进行光浸泡研究和测量的电流 - 电压特性的温度系数在60℃的预期工作温度,以确定稳定的值。稳定的总面积的效率和比功率在60℃下是7.2%和950 W /公斤,分别。在本文中,我们将回顾挑战与进步细胞的建设取得突出一些应用程序,并讨论了旨在改善性能目前的努力。

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