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Starting and Resolving a Partitioned BRAIN

机译:开始和解决分区大脑

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摘要

Time-triggered communication is a favored design strategy for safety-critical systems. However, the startup of time-triggered systems is a significant concern, since the time-line from which fault-tolerance is supported must be established in segmented mediums, e.g. multi-hop networks. The startup problems are particularly challenging since clique formation, i.e. the establishment of disjoint time-triggered communication sets, may be systematically induced. This paper presents an alternative startup solution based upon a braided-ring architecture called BRAIN (Braided Ring Availability Integrity Network). Segmentation-induced cliques are particularly prevalent in this architecture, since each node presents a potential medium break. The described strategy dramatically improves startup performance in relation to current approaches by leveraging the cooperative action of adjacent nodes during startup and high-integrity data propagation.
机译:时间触发的通信是安全关键系统的青睐设计策略。然而,时间触发系统的启动是一个重要的问题,因为必须在分段介质中建立支持容错的时间线,例如,在分段的介质中。多跳网络。启动问题尤其具有挑战性,因为Clique Mablation,即,可以系统地诱导了不相交的时间触发通信集的建立。本文介绍了一种基于名为大脑(编织环可用性完整性网络)的编织环架构的替代启动解决方案。在该架构中,分段诱导的派系在该架构中特别普遍,因为每个节点呈现潜在的中断。所描述的策略通过利用在启动期间和高完整性数据传播期间相邻节点的协作动作,大大提高了与电流方法的启动性能。

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