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Link architecture and spacecraft terminal for high rate direct to earth optical communications

机译:链路架构和航天器终端,用于高速率直接对地光通信

摘要

A satellite in low-Earth orbit (LEO) or medium-Earth orbit (MEO) with a modern image sensor and/or other remote sensing device can collect data at rates of 10 Mbps or higher. At these collection rates, the satellite can accumulate more data between its passes over a given ground station than it can transmit to the ground station in a single pass using radio-frequency (RF) communications. Put differently, the sensors fill the spacecraft's memory faster than the spacecraft can empty it. Fortunately, free-space optical communications signals can carry far more data than RF communications signals. In particular, a spacecraft can transmit over 1 Tb of data in a single pass using burst wavelength-division multiplexed (WDM) optical signals. Each burst may last seconds to minutes, and can include tens to hundreds of WDM channels, each of which is modulated at 10 Gbps or more.
机译:具有现代图像传感器和/或其他遥感设备的低地球轨道(LEO)或中地球轨道(MEO)的卫星可以以10 Mbps或更高的速率收集数据。以这些收集速率,卫星可以在给定地面站的两次通过之间累积更多的数据,而不是使用射频(RF)通信在一次通过中向地面站发送的数据。换句话说,传感器填满航天器的内存的速度快于航天器将其清空的速度。幸运的是,与RF通信信号相比,自由空间光通信信号可以承载更多的数据。特别是,航天器可以使用突发波分复用(WDM)光信号在单程中传输超过1 Tb的数据。每个突发可能持续数秒至数分钟,并且可以包括数十至数百个WDM通道,每个通道都以10 Gbps或更高的速率进行调制。

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