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Integration of existing IEC61850-based SAS within new high-availability architectures

机译:在新的高可用性架构中集成现有基于IEC61850的SAS

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The introduction of the standard IEC 61850 for the communication of Substation Automation System (SAS) opens new scenarios in which products of different vendors can communicate on the same network infrastructure, based on Ethernet technology. The recent improvements in industrial communications are going to deeply influence two of the key points in the development of SAS: synchronization and availability. The challenge of SASs of the future is to combine on the same plants high accuracy synchronization protocols (e.g. IEEE 1588) with high-availability systems in order to increase the overall performance. The integration in real plants is hindered because of the large base of traditional SASs already deployed in the field. In this paper the implementation of mixed scenario SASs, with high-available synchronized Bays together with legacy Bays, is analyzed and a solution for smooth integration is proposed. The idea is based on the use of an adaptation block that, when attached to a high-availability network, reconstructs the interface signals (e.g. synchronization signals) required by traditional Bay.
机译:变电站自动化系统(SAS)通信标准IEC 61850的引入开启了新的场景,在这种场景下,不同供应商的产品可以基于以太网技术在同一网络基础结构上进行通信。工业通信的最新改进将深刻影响SAS开发的两个关键点:同步和可用性。未来SAS的挑战是在同一工厂上将高精度同步协议(例如IEEE 1588)与高可用性系统相结合,以提高整体性能。由于已经在现场部署了传统SAS的庞大基础,因此阻碍了在实际工厂中的集成。本文分析了混合方案SAS的实现,该方案具有高可用的同步托架和旧托架,并提出了一种平滑集成的解决方案。该思想基于使用适配块,当适配块附接到高可用性网络时,该适配块重构传统Bay所需的接口信号(例如,同步信号)。

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