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Time-slotted software-defined Industrial Ethernet for real-time Quality of Service in Industry 4.0

机译:时隙软件定义的工业以太网,可实现工业4.0中的实时服务质量

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摘要

Reliable and timely data delivery, namely, real-time communication, is a key aspect for achieving the agile manufacturing goals of Industry 4.0. Moreover, reducing the maintenance, infrastructure and reconfiguration costs, and increasing the flexibility are general goals for communication systems in Industry 4.0. Although some works have extended the Ethernet standard IEEE 802.3 to satisfy the real-time requirements of industrial automation systems, the existing works have one or more of the following drawbacks: poor scalability, insufficient self-configuration capabilities, or increased costs due to their use of proprietary hardware. In this paper, we propose a Time-slotted Software-defined Industrial Ethernet (TS-SDIE) for real-time Quality of Service (QoS) in Industry 4.0. The paper addresses two key technologies of TS-SDIE, time synchronization and time slot-based packet switching. First, we develop a precision time protocol-based link delay compensation mechanism to handle the delay variance in networks. Precise synchronization is achieved at the microsecond level. Second, we design a system architecture for time slot-based industrial switches with four modules responsible for time synchronization, flow classification, time slot assignment, and packet forwarding, respectively. The experimental results show that the switch delay and its jitter can be reduced to 12.2 mu s and 0.12 mu s, respectively, for packets with a size of 100 B, which satisfies the requirements of time-sensitive networking for industrial automation systems. (C) 2019 Elsevier B.V. All rights reserved.
机译:可靠,及时的数据传递,即实时通信,是实现工业4.0敏捷制造目标的关键方面。此外,减少维护,基础设施和重新配置的成本以及提高灵活性是Industry 4.0中通信系统的总体目标。尽管有些作品已经扩展了以太网标准IEEE 802.3,以满足工业自动化系统的实时要求,但是现有作品具有以下一个或多个缺点:可伸缩性差,自配置功能不足或由于使用它们而导致成本增加专有硬件。在本文中,我们为工业4.0中的实时服务质量(QoS)提出了一个时隙软件定义的工业以太网(TS-SDIE)。本文论述了TS-SDIE的两项关键技术:时间同步和基于时隙的分组交换。首先,我们开发了一种基于精确时间协议的链路延迟补偿机制,以处理网络中的延迟差异。在微秒级别实现了精确的同步。其次,我们为基于时隙的工业交换机设计了一个系统架构,其中包含四个模块,分别负责时间同步,流分类,时隙分配和数据包转发。实验结果表明,对于大小为100 B的数据包,开关延迟及其抖动可以分别降低至12.2μs和0.12μs,满足了工业自动化系统对时间敏感的联网的要求。 (C)2019 Elsevier B.V.保留所有权利。

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