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A laser communication experiment utilizing the ACT satellite and an airborne laser transceiver

机译:利用ACT卫星和机载激光收发器进行激光通信实验

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摘要

The launch of a laser communication transmitter package into geosynchronous Earth orbit onboard the Advanced Communications Technology Satellite (ACTS) will present an excellent opportunity for the experimental reception of laser communication signals transmitted from a space orbit. The ACTS laser package includes both a heterodyne transmitter (Lincoln Labs design) and a direct detection transmitter (Goddard Space Flight Center design) with both sharing some common optical components. NASA Lewis Research Center's Space Electronics Division is planning to perform a space communication experiment utilizing the GSFC direct detection laser transceiver. The laser receiver will be installed within an aircraft provided with a glass port for the reception of the signal. This paper describes the experiment and the approach to performing such an experiment. Described are the constraints placed on the NASA Lewis experiment by the performance parameters of the laser transmitter and by the ACTS spacecraft operations. The conceptual design of the receiving terminal is given; also included is the anticipated capability of the detector.
机译:在高级通信技术卫星(ACTS)上将激光通信发射器组件发射到地球同步地球轨道上,将为实验接收从空间轨道发射的激光通信信号提供一个极好的机会。 ACTS激光套件包括外差发射器(Lincoln Labs设计)和直接检测发射器(Goddard太空飞行中心设计),两者共享一些通用的光学组件。美国宇航局刘易斯研究中心的太空电子部门正计划利用GSFC直接检测激光收发器进行太空通信实验。激光接收器将安装在带有玻璃端口的飞机上,用于接收信号。本文介绍了实验以及进行此类实验的方法。描述了激光发射器的性能参数和ACTS航天器操作对NASA Lewis实验的限制。给出了接收终端的概念设计;还包括检测器的预期功能。

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