在10.3公里的流空气中进行高带宽连贯光学通信
Applied optics
|September 14, 2023
概括
我们使用标准设备在10.3公里长的链路上实现了111.8Gb/s的自由空间光学通信. 这种高运行时间的激光范围适用于测试太空到地面通信系统.
科学领域:
- 光学通信是指光学通信.
- 自由空间光学自由空间光学
- 卫星通信系统 卫星通信系统
背景情况:
- 折叠的自由空间激光链提供低复杂性和高正常时间进行测试.
- 为光纤网络设计的商用现成收发器可以用于自由空间链接.
研究的目的:
- 为了证明在自由空间激光范围内的高通量连贯光学通信.
- 评估10.3公里激光射程适用于测试太空到地面光通信系统的适用性.
主要方法:
- 建立了一个10.3公里的折叠自由空间激光链接.
- 使用商业收发器传输了111.8Gb/s的连贯光通信信号.
- 测试了52个光学C波段通道的波长依赖性.
- 测量收到的光学功率,并将其与大气理论进行比较,以量化流.
主要成果:
- 在10.3公里的自由空间链路上实现了111.8Gb/s的吞吐量.
- 证明了用于自由空间通信的标准光纤收发器的可行性.
- 量化了大气动荡,并证实了该链路适合在不同高度 (20°-50°) 进行太空到地面测试.
结论:
- 10.3公里高正常运行时间的自由空间激光射程是高带宽空间到地面光通信系统的可行测试平台.
- 来自地球同步轨道卫星的未来料链接可以利用这种高带宽光通信技术.
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