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Simulative Comparison of Multiprotocol Label Switching and OpenFlow Network Technologies for Transmission Operations

机译:用于传输操作的多协议标签交换和OpenFlow网络技术的仿真比较

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摘要

Utility companies are integrating multiprotocol label switching (MPLS) technologies into existing backbone networks, including networks between substations and control centers. MPLS has mechanisms for efficient overlay technologies as well as mechanisms to enhance security: features essential to the functioning of the smart grid. However, with MPLS routing and other switching technologies innovation is restricted to the features enclosed “in the box.” More specifically, there is no practical way for utility operators or researchers to test new ideas such as alternatives to IP or MPLS on a realistic scale to obtain the experience and confidence necessary for real world deployments. As a result, novel ideas go untested. Conversely, the OpenFlow framework has enabled significant advancements in network research. OpenFlow provides utility operators and researchers the programmability and flexibility necessary to enable innovation in next-generation communication architectures for the smart grid. This level of flexibility allows OpenFlow to provide all features of MPLS and also allows OpenFlow devices to co-exist with existing MPLS devices. The simulation results in this paper demonstrate that OpenFlow performs as well as MPLS, and may therefore be considered an alternative to MPLS for smart grid applications.
机译:公用事业公司正在将多协议标签交换(MPLS)技术集成到现有的骨干网络中,包括变电站和控制中心之间的网络。 MPLS具有用于有效覆盖技术的机制以及用于增强安全性的机制:这是智能电网运行所必需的功能。但是,利用MPLS路由和其他交换技术,创新仅限于“包装在箱内”的功能。更具体地说,公用事业运营商或研究人员没有切实可行的方法来在实际规模上测试诸如IP或MPLS替代方案之类的新想法,以获取实际部署所需的经验和信心。结果,新颖的想法未经检验。相反,OpenFlow框架在网络研究方面取得了重大进步。 OpenFlow为公用事业运营商和研究人员提供了实现下一代智能电网通信架构创新所必需的可编程性和灵活性。这种灵活性水平使OpenFlow可以提供MPLS的所有功能,还可以使OpenFlow设备与现有MPLS设备共存。本文中的仿真结果证明OpenFlow的性能与MPLS一样好,因此可以被视为智能电网应用中MPLS的替代产品。

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