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A Scalable, Out-of-Band Diagnostics Architecture for International Space Station Systems Support

机译:用于国际空间站系统支持的可扩展的带外诊断架构

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摘要

The computational infrastructure of the International Space Station (ISS) is a dynamic system that supports multiple vehicle subsystems such as Caution and Warning, Electrical Power Systems and Command and Data Handling (C&DH), as well as scientific payloads of varying size and complexity. The dynamic nature of the ISS configuration coupled with the increased demand for payload support places a significant burden on the inherently resource constrained computational infrastructure of the ISS. Onboard system diagnostics applications are hosted on computers that are elements of the avionics network while ground-based diagnostic applications receive only a subset of available telemetry, down-linked via S-band communications. In this paper we propose a scalable, out-of-band diagnostics architecture for ISS systems support that uses a read-only connection for C&DH data acquisition, which provides a lower cost of deployment and maintenance (versus a higher criticality readwrite connection). The diagnostics processing burden is off-loaded from the avionics network to elements of the on-board LAN that have a lower overall cost of operation and increased computational capacity. A superset of diagnostic data, richer in content than the configured telemetry, is made available to Advanced Diagnostic System (ADS) clients running on wireless handheld devices, affording the crew greater mobility for troubleshooting and providing improved insight into vehicle state. The superset of diagnostic data is made available to the ground in near real-time via an out-of band downlink, providing a high level of fidelity between vehicle state and test, training and operational facilities on the ground.
机译:国际空间站(ISS)的计算基础设施是一个动态系统,它支持多个飞行器子系统,例如警告和警告,电力系统以及命令和数据处理(C&DH),以及大小和复杂性不同的科学有效载荷。 ISS配置的动态性质,加上对有效负载支持的需求不断增加,给固有的资源受限的ISS计算基础架构带来了沉重负担。机载系统诊断应用程序托管在作为航空电子网络组成部分的计算机上,而基于地面的诊断应用程序仅接收可用遥测的一部分,并通过S波段通信进行下行链接。在本文中,我们为ISS系统支持提出了一种可扩展的带外诊断体系结构,该体系结构使用只读连接进行C&DH数据采集,从而提供了较低的部署和维护成本(相对于更高的关键性读写连接)。诊断处理负担从航空电子网络转移到机载LAN的元件上,这些元件的总体运行成本较低,而计算能力却有所提高。在无线手持设备上运行的高级诊断系统(ADS)客户端可以使用内容比配置的遥测更丰富的诊断数据超集,从而为机组人员提供了更大的移动性以进行故障排除并提供对车辆状态的更深入了解。诊断数据的超集通过带外下行链路近乎实时地提供给地面,从而在车辆状态与地面测试,培训和操作设施之间提供了高度的保真度。

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