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Achieving elementary cycle synchronization between masters in the flexible time-triggered replicated star for ethernet

机译:以适用于以太网的灵活时间触发复制星座的大型循环同步

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For a distributed embedded system (DES) to operate continuously in a dynamic environment, it must be flexible and highly reliable. This applies in particular to its communication subsystem. The Flexible Time-Triggered Replicated Star for Ethernet (FTTRS) aims at providing such a subsystem by means of a highly-reliable switched-Ethernet architecture based on the Flexible Time-Triggered paradigm (FTT), a master/slave communication paradigm where the master periodically polls the slaves using so-called trigger messages (TMs). In particular, FTTRS interconnects nodes by redundant communication paths provided by two switches, each embedding an FTT master that manages the communication. This allows FTTRS to tolerate the failure of one switch without interrupting the communication as long as the masters are replica determinate, i.e., provide identical service to the slaves. The master replica determinism entails the masters broadcasting their TMs in a lockstep fashion: when one master broadcasts a TM, the other should do the same quasi-simultaneously. In this paper we present a solution inspired by the Precision Time Protocol (PTP) for achieving this lockstep transmission and preliminary results showing the precision with which we can synchronize the masters on a software prototype.
机译:对于在动态环境中连续运行的分布式嵌入式系统(DES),它必须灵活且高度可靠。这尤其适用于其通信子系统。以太网(FTTRS)的灵活的时间触发复制星星旨在通过基于灵活的时间触发范例(FTT),主/从通信范例提供高度可靠的交换式以太网架构,提供这样的子系统,主机/从属通信范例使用所谓的触发消息(TMS)定期轮询从站。特别地,FTTRS通过由两个交换机提供的冗余通信路径来互连节点,每个交换机都嵌入管理通信的FTT主机。这允许FTTRS在不中断通信的情况下容忍一个交换机的故障,只要主人副本确定,即,即可向从站提供相同的服务。主副本确定主义需要在LockStep时尚中广播其TMS的主人:当一个主广播TM时,另一个当前应该同时执行相同的准则。在本文中,我们提出了一种由精密时间协议(PTP)启发的解决方案,用于实现这种锁定传输和初步结果,显示了我们可以在软件原型上同步主机的精度。

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