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Designing fault-diagnosis and reintegration to prevent node redundancy attrition in highly reliable control systems based on FTT-Ethernet

机译:在基于FTT以太网的高度可靠的控制系统中设计故障诊断和重新集成以防止节点冗余损耗

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Distributed Embedded Control Systems (DECSs) used for Real-Time (RT) critical applications must satisfy stringent time requirements and attain high reliability. FTT-Ethernet provides nodes of DECSs with real-time communication capabilities, but does not include Fault Tolerance (FT) mechanisms. The FT4FTT project aims at proposing a complete FT architecture for RT critical DECSs. It uses a duplicated switched FTT-Ethernet star and active node replication with consistent distributed majority voting to respectively tolerate channel and node faults. However, FT4FTT, in its current state, still lacks mechanisms to prevent node redundancy attrition due to temporary faults affecting the nodes and channel, which are the most likely types of faults in DESs. This paper presents our ongoing work to complete the FT4FTT architecture with appropriate fault-diagnosis and reintegration mechanisms that overcome this limitation.
机译:用于实时(RT)关键应用程序的分布式嵌入式控制系统(DECS)必须满足严格的时间要求并获得高度的可靠性。 FTT以太网为DECS的节点提供实时通信功能,但不包括容错(FT)机制。 FT4FTT项目旨在为RT关键DECS提出完整的FT体系结构。它使用复制的FTT-以太网星形交换和主动节点复制,并采用一致的分布式多数表决,分别容忍信道和节点故障。但是,FT4FTT在当前状态下仍缺乏防止节点冗余损耗的机制,这是由于临时故障影响了节点和通道,而临时故障是DES中最有可能的故障类型。本文介绍了我们正在进行的工作,以通过克服此局限性的适当故障诊断和重新集成机制来完成FT4FTT体系结构。

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