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Timing analysis of rate-constrained traffic in TTEthernet using network calculus

机译:使用网络演算对TTEthernet中速率受限的流量进行时序分析

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摘要

TTEthernet is a deterministic, synchronized and congestion-free network protocol based on the Ethernet standard and compliant with the ARINC 664p7 standard network. It supports safety-critical real-time applications by offering different traffic classes: static time-triggered (TT) traffic, rate-constrained (RC) traffic with bounded end-to-end latencies and best-effort traffic, for which no guarantees are provided. TTEthernet uses three integration policies for sharing the network among the traffic classes: shuffling, preemption and timely block. In this paper, we propose an analysis based on network calculus (NC) to determine the worst-case end-to-end delays of RC traffic in TTEthernet. The main contribution of this paper is capturing the effects of all the integration policies on the latency bounds of RC traffic using NC, and the consideration of relative frame offsets of TT traffic to reduce the pessimism of the RC analysis. The proposed analysis is evaluated on several test cases, including realistic applications (e.g., Orion Crew Exploration Vehicle), and compared to related works.
机译:TTEthernet是基于以太网标准并符合ARINC 664p7标准网络的确定性,同步性和无拥塞网络协议。它通过提供不同的流量类别来支持对安全至关重要的实时应用:静态时间触发(TT)流量,速率受限(RC)流量和有限的端到端延迟以及尽力而为流量,对此不做任何保证。提供。 TTEthernet使用三种集成策略在流量类别之间共享网络:改组,抢占和及时阻止。在本文中,我们提出了一种基于网络演算(NC)的分析方法,以确定TTEthernet中RC流量的最坏情况端到端延迟。本文的主要贡献是使用NC捕获了所有集成策略对RC流量延迟范围的影响,并考虑了TT流量的相对帧偏移,以减少RC分析的悲观情绪。在包括实际应用(例如,猎户座乘员探索车)在内的几个测试案例中评估了提出的分析,并与相关工作进行了比较。

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