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Architecture design of real-time dual-ring optical industrial Ethernet and its FPGA implementation

机译:实时双环光工业以太网的架构设计及其FPGA实现

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Ethernet has been a hotspot in industrial communication. Its intrinsic non-determinism and slow failure recovery mechanism are two major obstacles of Ethernet's application in the industrial environment. To address these two problems, this paper proposes a novel fast recovery and real-time optical industrial Ethernet architecture based on dual-ring topology, and presents some test results from our partly implementation of the architecture. First, resource utlilization of the FPGA implementation shows that the proposed architecture is cost effective. Second, it is seen that recovering from a single failure costs no more than 30 ms, far less than traditional resilience techniques in Ethernet. Besides, end to end delay with no background traffic, which is instructive to the future design of the scheduling algorithms, is also presented.
机译:以太网一直是工业通信领域的热点。其固有的不确定性和缓慢的故障恢复机制是以太网在工业环境中应用的两个主要障碍。为了解决这两个问题,本文提出了一种基于双环拓扑结构的新型快速恢复和实时光工业以太网架构,并给出了部分实现该架构的测试结果。首先,FPGA实现的资源利用表明所提出的架构具有成本效益。其次,可以看出,从单个故障中恢复所花费的时间不超过30毫秒,远低于以太网中的传统弹性技术。此外,还提出了无背景流量的端到端延迟,这对调度算法的未来设计具有指导意义。

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