美国宇航局深空网络
太空探索
火星探测计划
空间推进技术
电信
自由空间光通信
空间技术
收发机
系统工程
深空探测
空格(标点符号)
计算机科学
航空航天工程
技术预测
光通信
推进
工程类
航天器
人工智能
航天器推进
天体生物学
物理
电子工程
无线
操作系统
作者
Daniel Hoppe,Abhijit Biswas,M. Srinivasan,Sabino Piazzolla
摘要
The future demand for enhanced telecommunication capacity required to support human and robotic exploration from deep-space has motivated the advancement of free-space laser communication technologies for the past few decades. Steady advances in these technologies, validated through space-to-ground demonstrations, have resulted in incremental advances with the deep-space optical communications (DSOC) technology demonstration being one of the next milestones on NASA's roadmap. NASA's Psyche Mission to launch early next decade plans to host a DSOC flight laser transceiver for link demonstrations extending from 0.1 to farther than 2 astronomical units (AU). The capabilities validated though this demonstration, we expect, could spur the use of optical communications infrastructure around Mars in the next few decades. In this paper we summarize ongoing activities underway at the Jet Propulsion Laboratory in preparation for the DSOC technology demonstration and go on to present discussions on the drivers for developing a robust deep space laser communications operational capability.
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