An investigation of the clique problem in FlexRay

Paul Milbredt, M. Horauer, A. Steininger
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引用次数: 10

Abstract

Distributed, time-triggered communication based on FlexRay is likely to become an enabler for future safety related applications in the automotive domain. Prior to series deployment, however, confidence has to be established that all mechanisms work as expected. One particular issue in this regard is the clique problem. Cliques are groups of nodes connected to the same bus which are only able to communicate with the members of the same clique, but not with members from another one. In time-triggered systems cliques might be caused, for instance, by Byzantine faults leading to a different view of the global time. In constrast to other hard real-time systems, FlexRay lacks explicit protocol support for detecting and resolving cliques. Thus, in this paper we investigate the clique problem in a real FlexRay system. We explain the different types of cliques and give examples how they might emerge and look like. One focus is the experimental study of the behavior of a real FlexRay cluster with existing cliques. In particular, we investigate the integration behavior of nodes into a system with present cliques as well as the behavior of the system when it is in a clique state. After a presentation of the results, we conclude by giving some directions about some protocol features which might be used for implementing clique avoidance or clique detection mechanisms.
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FlexRay中团问题的研究
基于FlexRay的分布式时间触发通信很可能成为未来汽车领域安全相关应用的推动者。然而,在系列部署之前,必须确定所有机制都按预期工作。在这方面的一个特别问题是小集团问题。Cliques是连接到同一总线的节点组,它们只能与同一组的成员通信,而不能与其他组的成员通信。在时间触发的系统中,派系可能会引起,例如,拜占庭错误导致对全球时间的不同看法。与其他硬实时系统相比,FlexRay缺乏对检测和解决派系的显式协议支持。因此,本文研究了实际FlexRay系统中的团问题。我们解释了不同类型的派系,并举例说明了它们是如何出现的。其中一个重点是对具有现有派系的真实FlexRay集群的行为进行实验研究。特别地,我们研究了节点在具有团系的系统中的积分行为,以及当系统处于团系状态时的行为。在介绍了结果之后,我们最后给出了一些关于可能用于实现集团避免或集团检测机制的协议特征的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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