用于信息物理系统通信和控制的软件定义网络

K. Ahmed, J. Blech, M. Gregory, H. Schmidt
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引用次数: 35

摘要

信息物理系统(CPS)通过将物理系统与通信网络集成,将人机交互、我们周围的物理世界和软件方面结合起来。机遇和研究挑战在很大程度上与CPS的三个核心子领域相关。计算、通信和控制。传统通信技术的现状是限制CPS发展的主要障碍之一。最具体地说,通信的创新受到现有路由和交换技术的限制,使得研究人员没有实际的方法来测试他们的新想法。软件定义网络(SDN)通过OpenFlow的实现,将网络控制逻辑从底层物理路由器和交换机中分离出来。这种现象使研究人员能够编写高级控制程序,指定用于实施CPS的核心网络的行为,从而实现下一代CPS通信架构的创新。本文提出了一种面向工业自动化的SDN架构。网络设计需求是从支持自动网络配置生成的正式组件规范中提取出来的。拟议的SDN架构旨在利用工业4.0和智能工厂,将工业自动化装置与网络和互联网技术结合在一起。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Software Defined Networking for Communication and Control of Cyber-Physical Systems
Cyber-physical Systems (CPS) combine human-machine interaction, the physical world around us, and software aspects by integrating physical systems with communication networks. Opportunities and research challenges are largely interconnected with the three core sub-domains of CPS — computation, communication and control. The current state of the art of the legacy communication technology is one of the major hindrances limiting the evolution of CPS. Most specifically, innovation in communication is restricted with existing routing and switching technologies leaving no practical methods for researchers to test their new ideas. Software Defined Networking (SDN), through the realization of OpenFlow, separates network control logic from the underlying physical routers and switches. This phenomenon allows researchers to write high-level control programs specifying the behavior of the core networks used to implement CPS and thus, enable innovation in next generation communication architectures for CPS. In this paper, we propose a SDN architecture for industrial automation. Network design requirements are extracted from formal component specifications which support the generation of automatic network configurations. The proposed SDN architecture aims to leverage Industry 4.0 and Smart Factories, to bring together industrial automation installations with networking and Internet technologies.
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