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Enhanced Effective Filtering Approach (eEFA) for Improving HSR Network Performance in Smart Grids

机译:增强有效的过滤方法(EEFA),用于提高智能电网中的HSR网络性能

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摘要

The effective filtering approach (EFA) is one of the most effective approaches for improving the network traffic performance of high-availability seamless redundancy (HSR) networks. However, because EFA uses port locking (PL) for detecting nondestination doubly-attached nodes with HSR protocol (DANH) rings in HSR networks, it forwards the first sent frame to all DANH rings in the network. In addition, it uses a control message for discovering passive QuadBox rings in both unidirectional and bidirectional communications. In this study, we propose an enhanced version of EFA called enhanced-EFA (eEFA) that does not forward unicast frames to nondestination DANH rings. eEFA does not use any control message to discover passive QuadBox rings in bidirectional communications. eEFA thus reduces the network traffic in HSR networks compared with EFA. Analytical and simulation results for a sample network show that the traffic reduction of eEFA was 4–26% and 2–20% for unidirectional and bidirectional communications, respectively, compared to EFA. eEFA, thus, clearly saves network bandwidth and improves the network performance.
机译:有效的过滤方法(EFA)是改善高可用性无缝冗余(HSR)网络的网络流量性能的最有效方法之一。但是,因为EFA使用端口锁定(PL)来检测HSR网络中的HSR协议(DANH)环的Nondestination倍增的节点,因此它将第一个发送的帧转发给网络中的所有达丹圈。此外,它使用控制消息来在单向和双向通信中发现被动Quadbox环。在这项研究中,我们提出了一个增强版的EFA,称为增强型EFA(EEFA),不会将单播框架转发给Nondestination Danh响铃。 EEFA不使用任何控制消息来发现双向通信中的被动Quadbox圈。因此,与EFA相比,EEFA减少了HSR网络中的网络流量。样品网络的分析和仿真结果表明,与EFA相比,单向和双向通信的交通降低分别为4-26%和2-20%,而单向和双向通信分别为2-20%。因此,EEFA显然可以节省网络带宽并提高网络性能。

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