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James Webb Space Telescope - L2 Communications for Science Data Processing

机译:James Webb太空望远镜-用于科学数据处理的L2通信

摘要

JWST is the first NASA mission at the second Lagrange point (L2) to identify the need for data rates higher than 10 megabits per second (Mbps). JWST will produce approximately 235 Gigabits of science data every day that will be downlinked to the Deep Space Network (DSN). To get the data rates desired required moving away from X-band frequencies to Ka-band frequencies. To accomplish this transition, the DSN is upgrading its infrastructure. This new range of frequencies are becoming the new standard for high data rate science missions at L2. With the new frequency range, the issues of alternatives antenna deployment, off nominal scenarios, NASA implementation of the Ka-band 26 GHz, and navigation requirements will be discussed in this paper. JWST is also using Consultative Committee for Space Data Systems (CCSDS) standard process for reliable file transfer using CCSDS File Delivery Protocol (CFDP). For JWST the use of the CFDP protocol provides level zero processing at the DSN site. This paper will address NASA implementations of Ground Stations in support of Ka-band 26 GHz and lesson learned from implementing a file base (CFDP) protocol operational system.
机译:JWST是NASA在第二个Lagrange点(L2)的第一个任务,用于确定对高于10 Mbps的数据速率的需求。 JWST每天将产生大约235吉比特的科学数据,这些数据将下行到深空网(DSN)。为了获得所需的数据速率,需要从X波段频率移至Ka波段频率。为了完成此过渡,DSN正在升级其基础结构。这个新的频率范围正在成为L2高数据速率科学任务的新标准。在新的频率范围内,本文将讨论替代天线的部署,偏离正常情况的问题,KaA频段26 GHz的NASA实施以及导航要求。 JWST还使用空间数据系统咨询委员会(CCSDS)标准流程,使用CCSDS文件传送协议(CFDP)进行可靠的文件传输。对于JWST,使用CFDP协议可在DSN站点上提供零级处理。本文将介绍支持Ka-band 26 GHz的地面站的NASA实施方案,以及从实施文件库(CFDP)协议操作系统中获得的经验教训。

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