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High-Intensity Radiated Field fault-injection experiment for a fault-tolerant distributed communication system

机译:容错分布式通信系统的高强度辐射场注入故障实验

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Safety-critical distributed flight control systems require robustness in the presence of faults. In general, these systems consist of a number of input/output (I/O) and computation nodes interacting through a fault-tolerant data communication system. The communication system transfers sensor data and control commands and can handle most faults under typical operating conditions. However, the performance of the closed-loop system can be adversely affected as a result of operating in harsh environments. In particular, High-Intensity Radiated Field (HIRF) environments have the potential to cause random fault manifestations in individual avionic components and to generate simultaneous system-wide communication faults that overwhelm existing fault management mechanisms. This paper presents the design of an experiment conducted at the NASA Langley Research Center's HIRF Laboratory to statistically characterize the faults that a HIRF environment can trigger on a single node of a distributed flight control system.
机译:对安全至关重要的分布式飞行控制系统在出现故障时需要鲁棒性。通常,这些系统由通过容错数据通信系统进行交互的多个输入/输出(I / O)和计算节点组成。通信系统传输传感器数据和控制命令,并可以在典型的操作条件下处理大多数故障。但是,由于在恶劣环境下运行,闭环系统的性能可能会受到不利影响。特别是,高强度辐射场(HIRF)环境有可能在单个航空电子组件中引起随机故障表现,并可能产生同时发生的覆盖整个系统的通信故障,从而使现有的故障管理机制不堪重负。本文介绍了在NASA兰利研究中心的HIRF实验室进行的实验设计,以统计地表征HIRF环境可能在分布式飞行控制系统的单个节点上触发的故障。

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