Impact of time-triggered transmission window placement on rate-constrained traffic in TTEthernet networks

Florian Heilmann, G. Fohler
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引用次数: 2

Abstract

Safety-critical Ethernet-based networks are receiving significant attention in avionics, automotive and industrial domains. Time-Triggered Ethernet (TTEthernet AS6802) provides safety-critical transmission guarantees via a high priority, time-triggered (TT) traffic class and a lower priority, rate-constrained (RC) traffic class. TT traffic is transmitted between synchronized nodes of a TTEthernet network in offline scheduled TT transmission windows. In this work, we analyze the impact of different placement strategies for these TT transmission windows on end-to-end delay and jitter of RC messages on the same path segment. We show that, depending on the placement of TT transmission windows in a schedule, the end-to-end delay and jitter of RC messages can vary significantly. We further introduce link-based offsets, a new placement strategy for TT transmission windows which allows to reduce the impact of TT transmission windows on RC traffic. In this strategy offsets are applied to all TT transmission windows in a physical link schedule to reduce the amount of time that an RC message on the same physical link is delayed by TT traffic. The link-based offsets strategy can be implemented in the TTEthernet scheduler and does not require hardware modifications. We show that the link-based offset strategy can reduce the end-to-end delay and jitter of RC traffic, and evaluate our claims using an OMNET++ simulation.
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时间触发传输窗口放置对以太网中速率受限流量的影响
基于以太网的安全关键网络在航空电子、汽车和工业领域受到了极大的关注。时间触发以太网(ttetheras6802)通过高优先级、时间触发(TT)流量类和低优先级、速率约束(RC)流量类提供安全关键型传输保证。TT流量在离线定时TT传输窗口中在同步节点间传输。在这项工作中,我们分析了这些TT传输窗口的不同放置策略对同一路径段上RC消息的端到端延迟和抖动的影响。我们表明,根据TT传输窗口在调度中的位置,RC消息的端到端延迟和抖动可以显着变化。我们进一步介绍了基于链路的偏移,这是TT传输窗口的一种新的放置策略,可以减少TT传输窗口对RC流量的影响。在这种策略中,偏移量应用于物理链路调度中的所有TT传输窗口,以减少同一物理链路上的RC消息被TT流量延迟的时间。基于链路的偏移策略可以在以太网调度器中实现,并且不需要修改硬件。我们证明了基于链路的偏移策略可以减少RC流量的端到端延迟和抖动,并使用omnet++仿真评估了我们的主张。
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