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Layer 2 Ethernet Communication Tunneling Possibilities in Automation Systems

机译:自动化系统中的第2层以太网通信隧道可能性

摘要

Future trends in energy generation are renewable energy sources and distributed energy generation. In control systems, these changes require higher automatization, more intelligent devices and secure and reliable communication. Another requirement is faster communication. Building a system that is able to fulfill real-time communication requirements over network layer is a hindrance to automation systems. There are multiple protocols that can manage the requirements, but many of them have limitations and requirements of their own. The limitations can be related to packet sizes, used devices or they may require a license. Tunneling protocols can bring a more general solution for the real-time problem. Tunneling Ethernet communication over network layer and letting the tunneling protocol to handle the network layer packaging instead of the communication protocol removes the need of a layer 3 protocol. Layer 2 tunneling provides a direct connection between separate local area networks. It enables a way for devices to communicate with each other over network layer using layer 2 communication protocols. Tunnel uses a pre-configured route to the destination gateway device making the routing of messages simpler and faster than with traditional IP routing. Layer 2 tunneling can be used in any communication system that utilizes layer 2 and layer 3 communication. This thesis focuses on use of tunneling in automation systems.The purpose of this thesis is to provide information and possible solutions for layer 2 Ethernet tunneling. The main focus is in suitable tunneling protocols and communication protocols, but also security and resilience solutions are studied. This thesis is composed of published studies, researches, articles and books that address the topic.
机译:能源发电的未来趋势是可再生能源和分布式能源发电。在控制系统中,这些变化需要更高的自动化程度,更多的智能设备以及安全可靠的通信。另一个要求是更快的通信。构建能够满足网络层实时通信要求的系统是自动化系统的障碍。有多种协议可以管理需求,但是其中许多协议都有其自身的局限性和要求。这些限制可能与数据包大小,使用的设备有关,或者可能需要许可证。隧道协议可以为实时问题带来更通用的解决方案。通过网络层对以太网通信进行隧道化,并让隧道协议代替通信协议来处理网络层打包,从而消除了对第3层协议的需求。第2层隧道提供了单独局域网之间的直接连接。它使设备可以使用第2层通信协议在网络层上相互通信。隧道使用到目标网关设备的预先配置的路由,使消息的路由比传统IP路由更简单,更快。第2层隧道可以在任何利用第2层和第3层通信的通信系统中使用。本文的重点是在自动化系统中使用隧道。本文的目的是为第二层以太网隧道提供信息和可能的解决方案。主要关注于合适的隧道协议和通信协议,但还研究了安全性和弹性解决方案。本论文由针对该主题的已发表的研究,研究,文章和书籍组成。

著录项

  • 作者

    Leinonen Matias;

  • 作者单位
  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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