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High performance communication redundancy in a digital substation based on IEC 62439-3 with a station bus configuration

机译:具有站总线配置的基于IEC 62439-3的数字变电站中的高性能通信冗余

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High speed communication is critical in a digital substation from protection, control and automation perspectives. Although International Electro-technical Commission (IEC) 61850 standard has proven to be a reliable guide for the substation automation and communication systems, yet it has few shortcomings in offering redundancies in the protection architecture, which has been addressed better in IEC 62439-3 standard encompassing Parallel Redundancy Protocol (PRP) and High-availability Seamless Redundancy (HSR). Due to single port failure, data losses and interoperability issues related to multi-vendor equipment, IEC working committee had to look beyond IEC 61850 standard. The enhanced features in a Doubly Attached Node components based on IEC 62439-3 provides redundancy in protection having two active frames circulating data packets in the ring. These frames send out copies in the ring and should one of the frame is lost, the other copy manages to reach the destination node via an alternate path, ensuring flawless data transfer at a significant faster speed using multi-vendor equipment and fault resilient circuits. The PRP and HSR topologies provides higher performance in a digitally protected substation and promise better future over the IEC 61850 standard due to its faster processing capabilities, increased availability and minimum delay in data packet transfer and wireless communication in the network. This paper exhibits the performance of PRP and HSR topologies focusing on the redundancy achievement within the network and at the end nodes of a station bus ring architecture, based on IEC 62439-3.
机译:从保护,控制和自动化的角度来看,高速通信对于数字变电站至关重要。尽管国际电工技术委员会(IEC)61850标准已被证明是变电站自动化和通信系统的可靠指南,但在提供冗余保护结构方面几乎没有什么缺点,而IEC 62439-3标准则可以更好地解决这一问题。包括并行冗余协议(PRP)和高可用性无缝冗余(HSR)。由于单端口故障,数据丢失以及与多厂商设备相关的互操作性问题,IEC工作委员会不得不超越IEC 61850标准。基于IEC 62439-3的双连接节点组件中的增强功能为保护提供了冗余,该保护具有两个活动帧,在环中循环了数据包。这些帧在环中发出副本,如果其中一个帧丢失,则另一个副本将设法通过备用路径到达目的地节点,从而确保使用多厂商设备和故障恢复电路以更快的速度实现完美的数据传输。 PRP和HSR拓扑在受数字保护的变电站中提供更高的性能,并由于其更快的处理能力,更高的可用性以及网络中数据包传输和无线通信的最小延迟而有望超越IEC 61850标准,拥有更美好的未来。本文展示了基于IEC 62439-3的PRP和HSR拓扑的性能,重点关注网络内部和站点总线环体系结构的末端节点上的冗余实现。

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