5.625 Gbps双向激光通信测量在NFIRE卫星和一个光学地面站之间

R. Fields, D. Kozlowski, H. Yura, R. Wong, J. Wicker, C. Lunde, M. Gregory, B. Wandernoth, F. Heine
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引用次数: 64

摘要

在位于特内里费岛伊扎纳的欧洲航天局光学地面站圆顶内安装有6.5厘米直径地面孔径的Tesat相干激光通信终端和近场红外实验近地轨道航天器上类似的天基终端(12.4厘米直径孔径)之间,已经在可重复的基础上演示了5.625 Gbps 1064 nm双向激光通信。夜间和白天的双向连接都被证明是最长的,持续时间为177秒。在测试条件下,与大气模型和初步大气0和闪烁测量的相关性表明,这种相干系统可以在更低的高度成功部署,而无需使用自适应光学进行补偿。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
5.625 Gbps bidirectional laser communications measurements between the NFIRE satellite and an Optical Ground Station
5.625 Gbps bidirectional laser communication at 1064 nm has been demonstrated on a repeatable basis between a Tesat coherent laser communication terminal with a 6.5 cm diameter ground aperture mounted inside the European Space Agency Optical Ground Station dome at Izana, Tenerife and a similar space based terminal (12.4 cm diameter aperture) on the Near Field Infrared Experiment low earth orbiting spacecraft. Both night and day bidirectional links were demonstrated with the longest being 177 seconds in duration. Correlation with atmospheric models and preliminary atmospheric r0 and scintillation measurements have been made for the conditions tested, suggesting that such coherent systems can be deployed successfully at still lower altitudes without resorting to the use of adaptive optics for compensation.
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