首次在灵活的时间触发的以太网复制星之上实现和测试节点复制方案

Alberto Ballesteros, Sinisa Derasevic, David Gessner, F. Font, I. Álvarez, M. Barranco, J. Proenza
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引用次数: 5

摘要

分布式嵌入式系统通常具有实时性和可靠性要求。此外,当它们部署在动态环境中时,还必须能够灵活地适应不断变化的条件。FT4FTT项目旨在提供一种交换以太网架构,支持可预测、高可靠性和自适应的分布式控制应用。FT4FTT依靠灵活时间触发复制星(FTTRS)来容忍信道故障。此外,通过多数投票的主动节点复制来容忍节点的硬件故障。为了协调触发副本中任务的执行,我们设计了CD4NR机制,其中网络协助决定执行什么以及何时执行。本文首次在FTTRS的真实样机上实现了CD4NR机制,并对整个系统进行了首次测试。为此,我们开发了一个实验装置,基于硬件在环技术,运行一个实时控制应用程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
First implementation and test of a node replication scheme on top of the flexible time-triggered replicated star for ethernet
Distributed embedded systems typically have real-time and dependability requirements. Moreover, they must also be flexible to changing conditions when they are deployed in dynamic environments. The FT4FTT project aims at providing a switched Ethernet architecture that can support distributed control applications that are predictable, highly-reliable and adaptive. FT4FTT relies on the Flexible Time-Triggered Replicated Star for Ethernet (FTTRS) to tolerate channel faults. Moreover, nodes' hardware faults are tolerated by means of active node replication with majority voting. In order to coordinately trigger the execution of the tasks in the replicas, we designed the CD4NR mechanism, in which the network assists in deciding what to execute and when. This paper presents the first implementation of the CD4NR mechanism on a real prototype of FTTRS and the first testing of the complete system. For this we developed an experimental setup, based on the hardware-in-the-loop technique, running a real-time control application.
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