Development of advanced space solar cells at Spectrolab

J. Boisvert, D. Law, R. King, D. Bhusari, X. Liu, A. Zakaria, W. Hong, S. Mesropian, D. Larrabee, R. Woo, A. Boca, K. Edmondson, D. Krut, D. Peterson, K. Rouhani, B. Benedikt, N. Karam
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引用次数: 27

Abstract

High efficiency multi-junction solar cells utilizing inverted metamorphic1,2 and semiconductor bonding technology3 are being developed at Spectrolab for use in one-sun space and near-space applications. Recently that effort has been extended to include low-concentration space applications. This paper will review the present state-of-the-art cell technologies at Spectrolab, with an emphasis on performance characterization data at both 1-sun and low-concentration operating conditions that these cells will experience in flight‥ A cell coupon utilizing IMM solar cells has been assembled and subjected to thermal cycling. Pre-and post thermal cycling data have been collected and there is no performance degradation or mechanical issues after the test.
Spectrolab先进太空太阳能电池的开发
Spectrolab正在开发利用倒变质和半导体键合技术的高效多结太阳能电池,用于单太阳空间和近空间应用。最近,这一努力已扩大到包括低浓度空间应用。本文将回顾Spectrolab目前最先进的电池技术,重点介绍这些电池在飞行中将经历的1太阳和低浓度操作条件下的性能表征数据。利用IMM太阳能电池的电池组合已经组装并进行了热循环。收集了热循环前后的数据,测试后没有出现性能下降或机械问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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