Implementing PRP and HSR Schemes in a HV Substation based on IEC62439-3

Shantanu Kumar, N. Das, S. Islam
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引用次数: 5

Abstract

High speed communication is an essential feature of Substation Automation and Control. Existing International Electro-technical Commission (IEC) 61850 guidelines substation automation and communication systems have few shortcomings in the protection architecture which necessitated an upgrade to another guideline. This has been addressed better in IEC 62439–3 standard encompassing Parallel Redundancy Protocol (PRP) and High-availability Seamless Redundancy (HSR), Earlier there have been number of issues with IEC 61850, due to single port failure, data losses and interoperability related to multi-vendor equipment. The enhanced features of a Double Attached Node component based on IEC 62439–3, provide redundancy in protection by virtue of having two active frames circulating in the ring. These frames send out copies in the ring. Should one of them be lost, the destination node will receive alternate frame, ensuring flawless data transfer at a significant faster speed in a multi-vendor equipment ensuring the circuit is fault resilient. PRP and HSR topologies promise enhanced reliability over IEC 61850 standard due to faster processing capabilities, increased availability in the scheme with least delay time in circulating data packet in wireless communication in the network. This paper exhibit performance of PRP and HSR topologies addressing redundancy within the network ring leveraging on IEC 62439–3.
基于IEC62439-3的高压变电站PRP和HSR方案的实现
高速通信是变电站自动化控制的基本特征。现有的国际电工委员会(IEC) 61850指南变电站自动化和通信系统在保护体系结构方面几乎没有缺点,需要升级到另一个指南。包含并行冗余协议(PRP)和高可用性无缝冗余(HSR)的IEC 62439-3标准已经更好地解决了这个问题。早些时候,由于单端口故障、数据丢失和与多供应商设备相关的互操作性,IEC 61850存在许多问题。基于IEC 62439-3的双附加节点组件的增强功能,通过在环中循环两个活动帧提供冗余保护。这些帧发送副本在环。如果其中一个丢失,目标节点将接收备用帧,确保在多供应商设备中以更快的速度进行完美的数据传输,确保电路具有故障弹性。与IEC 61850标准相比,PRP和HSR拓扑具有更快的处理能力,提高了方案的可用性,并且在网络中无线通信中循环数据包的延迟时间最少。本文展示了利用IEC 62439-3解决网络环内冗余的PRP和HSR拓扑的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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