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Design Optimization of Cyber-Physical Distributed Systems using IEEE Time-sensitive Networks (TSN)

机译:使用IEEE时敏网络(TsN)的网络物理分布式系统的设计优化

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摘要

In this paper we are interested in safety-critical real-time applications implemented on distributed architectures supporting the Time-SensitiveNetworking (TSN) standard. The ongoing standardization of TSN is an IEEE effort to bring deterministic real-time capabilities into the IEEE 802.1 Ethernet standard supporting safety-critical systems and guaranteed Quality-of-Service. TSN will support Time-Triggered (TT) communication based on schedule tables, Audio-Video-Bridging (AVB) flows with bounded end-to-end latency as well as Best-Effort messages. We first present a survey of research related to the optimization of distributed cyber-physical systems using real-time Ethernet for communication. Then, we formulate two novel optimization problems related to the scheduling and routing of TT and AVB traffic in TSN. Thus, we consider that we know the topology of the network as well as the set of TT and AVB flows. We are interested to determine the routing of both TT and AVB flows as well as the scheduling of the TT flows such that all frames are schedulable and the AVB worst-case end-to-end delay is minimized. We have proposed an Integer Linear Programming (ILP) formulation for the scheduling problem and a Greedy Randomized Adaptive Search Procedure (GRASP)-based heuristic for the routing problem. The proposed approaches have been evaluated using several test cases.
机译:在本文中,我们对在支持时间敏感网络(TSN)标准的分布式体系结构上实现的安全关键型实时应用程序感兴趣。正在进行的TSN标准化是IEEE的一项努力,旨在将确定性实时功能纳入支持安全关键系统和保证服务质量的IEEE 802.1以太网标准中。 TSN将支持基于时间表表的时间触发(TT)通信,具有有限的端到端延迟以及“尽力而为”消息的音频视频桥接(AVB)流。我们首先提出一项与使用实时以太网进行通信的分布式网络物理系统优化相关的研究调查。然后,我们提出了与TSN中TT和AVB流量的调度和路由相关的两个新颖的优化问题。因此,我们认为我们知道网络的拓扑以及TT和AVB流的集合。我们有兴趣确定TT和AVB流的路由以及TT流的调度,以使所有帧均可调度,并使AVB最坏情况的端到端延迟最小。我们提出了一种用于调度问题的整数线性规划(ILP)公式,并提出了一种基于贪婪随机自适应搜索过程(GRASP)的启发式算法来解决路由问题。所提出的方法已经使用几个测试案例进行了评估。

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