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Ground terminal design for high rate direct to earth optical communications

机译:用于高速率直接对地光通信的接地端子设计

摘要

Challenges of direct-to-Earth (DTE) laser communications (lasercom) between spacecraft in low-Earth orbit (LEO) or medium-Earth orbit (MEO) and ground terminals can include short duration transmission windows, long time gaps between the transmission windows, deleterious effects of atmospheric turbulence, and the inability to operate in cloudy weather. Direct-link optical communications systems described herein can have data rates that are high enough to empty high-capacity on-board buffer(s) (e.g., having a capacity of at least about 1 Tb to hundreds of Tb) of a spacecraft in a single pass lasting only tens of seconds to a few minutes (e.g., 1-15 minutes), and overprovisioning the buffer capacity accounts for variations in the latency between links. One or more distributed networks of compact optical ground terminals, connected via terrestrial data networks, receive and demodulate WDM optical data transmissions from a plurality of orbiting spacecraft (e.g., satellites).
机译:低地球轨道(LEO)或中地球轨道(MEO)中的航天器与地面终端之间直接对地(DTE)激光通信(lasercom)的挑战可能包括持续时间短的传输窗口,传输窗口之间的长时间间隔,大气湍流的有害影响以及在多云天气中无法运行。本文所述的直接链路光通信系统可具有足够高的数据速率,以清空航天器中航天器的高容量机载缓冲器(例如,容量至少约为1 Tb至数百Tb)。单遍仅持续数十秒到几分钟(例如1至15分钟),而缓冲区容量的超额配置说明了链路之间的延迟有所不同。经由地面数据网络连接的一个或多个紧凑型光学地面终端的分布式网络接收并解调来自多个在轨航天器(例如,卫星)的WDM光学数据传输。

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