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NASA's Space Network Ground Segment Sustainment Project Preparing for the Future

机译:美国宇航局的太空网络地面段维持项目为未来做准备

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NASA's Tracking and Data Relay Satellite System (TDRSS) ground terminals will be replaced in the 2015 timeframe. The existing terminals have been subject to many small scale upgrades and modifications since their last major refurbishment in 1994. The ground terminals, in conjunction with seven operational geosynchronous communication relay satellites, support over 20 customer spacecraft, including Terra, Hubble Space Telescope, the International Space Station and others. The terminal replacement effort, called the Space Network Ground Segment Sustainment (SGSS), will modernize the ground terminal communications infrastructure and provide new capabilities for customers. This paper describes the new architecture, some of the significant technology upgrades and the operations concepts that will enable TDRSS to provide additional services to more customers at lower cost. The SGSS will provide a flexible, extensible, scalable and sustainable ground segment that will: 1) maintain existing Space Network (SN) capabilities and interfaces; 2) accommodate new customers and capabilities, including higher data rate support and additional modulation and coding schemes; 3) reduce the effort required to maintain the ground terminals; 4) transition operations from the existing system to SGSS without disrupting services, and; 5) achieve a 99.99% operational availability for customer services. The SGSS will accomplish this by: 1) implementing an architecture using state-of-the-practice technology which enables low impact incremental upgrades; 2) simplifying the expansion process for adding ground and space assets; 3) incorporating commercial off-the-shelf (COTS) products to a very large extent, and; 4) maximizing equipment commonality. Some of the new and enhanced SGSS capabilities include: 1) the ability to easily add new transmit and receive waveforms; 2) early signal digitization for lossless signal distribution; 3) high speed digital packet switching; 4) new coding schemes, including low-density parity-check (LDPC) and turbo product codes (TPC); 5) Ka-band one-way tracking services, and; 6) data rate increases to 50Mbps for command and 1.2 Gbps for telemetry.
机译:NASA的跟踪和数据继电器卫星系统(TDRSS)接地端子将在2015年的时间框架中替换。自1994年最后一次重新翻新以来,现有终端一直受到许多小规模升级和修改。接地终端与七个运营地球同步通信继电器卫星一起支持20多个客户航天器,包括Terra,Hubble Space Telescope,International空间站和其他。终端更换努力,称为空间网络地面段维持(SGSS),将现代化地面终端通信基础架构,为客户提供新功能。本文介绍了新的架构,一些重要的技术升级和运营概念,使TDR可以以更低的成本为更多客户提供额外的服务。 SGSS将提供一个灵活,可扩展,可扩展且可持续的地面段,其中将:1)维护现有的空间网络(SN)功能和接口; 2)满足新客户和能力,包括更高的数据速率支持和额外的调制和编码方案; 3)减少维护地面终端所需的努力; 4)从现有系统到SGSS的转换操作,不扰乱服务,以及; 5)为客户服务达到99.99%的运营可用性。 SGSS将实现以下目标:1)使用实践状态技术实施架构,该技术可实现低影响增量升级; 2)简化添加地面和空间资产的扩展过程; 3)在很大程度上在很大程度上掺入商业现货(婴儿床)产品,并进行; 4)最大化设备共性。一些新的和增强的SGSS功能包括:1)能够轻松添加新的发射和接收波形; 2)无损信号分布的早期信号数字化; 3)高速数字包切换; 4)新编码方案,包括低密度奇偶校验(LDPC)和涡轮产品代码(TPC); 5)KA波段单向跟踪服务,以及; 6)数据速率增加到50Mbps,用于遥测的1.2 Gbps。

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