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PRP and HSR for High Availability Networks in Power Utility Automation: A Method for Redundant Frames Discarding

机译:电力实用程序自动化中用于高可用性网络的PRP和HSR:丢弃冗余帧的方法

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Critical systems require zero recovery time when a failure occurs in a communications network. The soon to be implemented standard IEC 62439-3 defines the only two protocols, parallel redundancy protocol and high-availability seamless redundancy, which fulfill this requirement and ensure no frame loss in the presence of an error. These protocols also provide a hot-plugging capability, which allows elements to be added to or removed from the network without interrupting communications and the operation of the plant. The electricity sector has adopted these for power utility automation in the recently published IEC 61850-90-4. The challenge is to obtain an efficient approach for use in electronic devices, capable of managing the characteristic duplicates, and circulating frames of these protocols, coupled with agile architectures capable of dealing with real-time processing requirements, fast switching times, high throughput, and deterministic behavior. The main contribution of this paper is the in-depth analysis it makes of network parameters imposed by the application of the protocols to power utility automation, and the proposition of a frame management system based on a segmented memory system that improves frame detecting time and uses the smallest memory required in order to resolve all the issues dealt with.
机译:当通信网络中发生故障时,关键系统需要零恢复时间。即将实施的标准IEC 62439-3定义了仅有的两个协议,并行冗余协议和高可用性无缝冗余,它们满足了这一要求并确保在出现错误时不会丢失帧。这些协议还提供了热插拔功能,该功能允许将元素添加到网络中或从网络中删除,而不会中断通信和工厂的运行。电力行业已在最近发布的IEC 61850-90-4中将这些用于电力公用事业自动化。面临的挑战是要获得一种用于电子设备的有效方法,该方法能够管理这些协议的特征重复项和循环帧,再加上能够处理实时处理要求,快速切换时间,高吞吐量和可扩展性的敏捷体系结构。确定性行为。本文的主要贡献在于,它对协议在电力公用事业自动化中的应用所施加的网络参数进行了深入的分析,并提出了一种基于分段存储系统的帧管理系统,以缩短帧检测时间并减少使用时间。解决所有问题所需的最小内存。

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