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Multipath Routing of Mixed-Critical Traffic in Time Sensitive Networks

机译:时间敏感网络中混合关键流量的多径路由

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Distributed embedded systems for safety-critical applications demand reliable communication with real-time characteristics. Switched Ethernet-based network is a practical and scalable solution that allows high-reliability level through path redundancy. The Time-Sensitive Networking (TSN) standard is being developed to support realtime communication which supports a deterministic and low latency communication for safety-critical control applications, namely, Time-Triggered (TT) traffic class. In addition, a bounded-latency traffic class, namely, Audio Video Bridging (AVB) class is introduced. In this paper, we propose a multipath routing technique which tackles both TT and AVB traffic simultaneously. The proposed approach investigates satisfying path redundancy requirements for each message while the imposed interference from TT traffic on AVB traffic is minimized. The considered routing problem is formalized as an Integer Linear Programming (ILP) optimization problem. The Worst Case end-to-end Delay (WCD) is the optimization objective. 50 test cases of various network size and number of messages are solved to evaluate the performance, i.e., interference reduction, and the scalability of the proposed technique. Results demonstrate WCD reduction up to 90% comparing to the typical routing approach that determines TT and AVB routing in separate steps.
机译:用于安全关键应用的分布式嵌入式系统需求可靠地与实时特性通信。基于交换以太网的网络是一种实用且可扩展的解决方案,允许通过路径冗余的高可靠性级别。正在开发时间敏感的网络(TSN)标准以支持实时通信,该传输支持安全关键控制应用的确定性和低延迟通信,即时间触发(TT)流量类。另外,介绍了界限延迟业务类,即音频视频桥接(AVB)类。在本文中,我们提出了一种多路径路由技术,其同时解决TT和AVB流量。所提出的方法调查每条消息的令人满意的路径冗余要求,而在AVB流量上的TT流量的强加干扰最小化。被认为的路由问题被形式化为整数线性编程(ILP)优化问题。最坏情况的端到端延迟(WCD)是优化目标。解决了各种网络大小和消息数的50个测试用例,以评估性能,即干扰减小和所提出的技术的可扩展性。结果表明,与典型的路由方法相比,WCD减少高达90%,该路由方法在单独的步骤中确定TT和AVB路由。

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