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IMPLEMENTING SUBSYSTEM-LEVEL REDUNDANCY WITHIN THE NOAA JASON GROUND SYSTEM

机译:在NOAA JASON地面系统中实现子系统级冗余

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The National Oceanic and Atmospheric Administration (NOAA) Jason Ground System (NJGS) is a consolidated next-generation ground system that will support the simultaneous operation of the OSTM/Jason-2 and Jason-3 ocean surface topography missions. The NJGS will consist of several independent subsystems for spacecraft command and control, telemetry processing, and data archiving and distribution. The existing NOAA Jason-2 Ground System (J2GS) was designed around the concept of subsystem "strings", in which two complete sets of subsystems acted in primary and standby roles. For the NJGS, this concept is replaced with subsystem-level redundancy, in which two or more instances of each subsystem independently provide redundant capabilities. This paper discusses the design elements involved in the provision of a ground system architecture providing redundancy at the subsystem level. The paper focuses on the interaction between primary and standby subsystems and the mechanism through which failover capabilities are provided across the ground system.
机译:国家海洋和大气管理局(NOAA)Jason地面系统(NJGS)是一个综合的下一代地面系统,将支持OSTM / Jason-2和Jason-3海面地形任务的同时运行。 NJGS将包括用于航天器指令和控制,遥测处理和数据归档和分发的几个独立子系统。现有的NOAA JASON-2地面系统(J2GS)围绕子系统“Strings”的概念设计,其中两组完整的子系统采用了初级和备用角色。对于NJGS,该概念替换为子系统级冗余,其中每个子系统的两个或更多个实例独立地提供冗余功能。本文讨论了提供在子系统级别提供冗余的地面系统架构的设计元素。本文重点介绍了主要和备用子系统之间的交互以及在地面系统上提供故障转移功能的机制。

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