以太网中基于smt的调度与RC网络演算分析的集成

A. Finzi, Silviu S. Craciunas
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引用次数: 11

摘要

在基于混合临界以太网的时间触发网络(如tethernet)中,时间触发通信(TT)与速率约束(RC)和尽力而为(BE)流量共存。全局通信方案,即调度,为TT流建立无争用的传输时间,确保保证低延迟和最小抖动。现有的方法使用可满足模理论(SMT)来制定调度约束并求解由此产生的问题。然而,这些方法没有考虑TT调度对RC流量的影响。因此,由此产生的TT调度可能导致RC流量的最坏情况延迟需求不再得到满足。在本文中,我们提出了一种新的方法,通过反馈回路将RC分析包含在最先进的基于smt的调度综合算法中,以保持基于smt的方法的最优性,同时也能够改善RC交通延迟。我们的方法是这样设计的,它可以很容易地集成到现有的基于SMT或mip的解决方案中。我们使用来自实际用例的变体来评估我们的方法,并提出了进一步提高基于反馈的方法的效率的方法。
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Integration of SMT-based Scheduling with RC Network Calculus Analysis in TTEthernet Networks
In mixed-criticality Ethernet-based time-triggered networks, like TTEthernet, time-triggered communication (TT) coexists with rate-constrained (RC) and best-effort (BE) traffic. A global communication scheme, i.e., a schedule, establishes contention-free transmission times for TT flows ensuring guaranteed low latency and minimal jitter. Current approaches use Satisfiability Modulo Theories (SMT) to formulate the scheduling constraints and solve the resulting problem. However, these approaches do not take into consideration the impact of the TT schedule on RC traffic. Hence, the resulting TT schedule may cause the worst-case latency requirements of RC traffic not to be fulfilled anymore.In this paper, we present a novel method for including an RC analysis in state-of-the-art SMT-based schedule synthesis algorithms via a feedback loop in order to maintain the optimality properties of the SMT-based approaches while also being able to improve the RC traffic delays. Our method is designed in such a way that it can be readily integrated into existing SMT- or MiP-based solutions. We evaluate our approach using variants derived from a realistic use-case and present methods to further improve the efficiency of our feedback-based approach.
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