Analysis for the Improvement of IEC 61850 Based Substation Communications Using OPNET

Hasneen Zaman, Narottam Das
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引用次数: 1

Abstract

Electrical substation is one of the most important parts of power system network. Over the years, the substations have undergone several structural and technical modifications. The IEC 61850 standard launched by the International Electrotechnical Commission (IEC) has created a strong platform for modern Substation Automation Systems (SAS) based on Digital Communication Systems. To increase the system reliability and efficiency, the Substation Communication Network (SCN) should have a quicker response, especially during electrical faults. According to the IEC 61850 standard, the end-to-end (ETE) time delay for transmission and control of data has to be less than 4-ms which is achievable when the data packet size is smaller. However, when the packet size is larger, it exceeds the delay time limit. Hence, sending smaller data packets could be a solution, but sending too many smaller packets might create congestion in network incurring another delay issue. This paper presents a different network topology that is designed in Optimized Network Engineering Tools (OPNET) environment which is capable of transmitting and controlling larger data packets within the 4-ms time delay limit as recommended by the IEC 61850 standard.
基于IEC 61850的变电站通信改进的OPNET分析
变电站是电力系统网络的重要组成部分。多年来,变电站经历了几次结构和技术改造。国际电工委员会(IEC)推出的IEC 61850标准为基于数字通信系统的现代变电站自动化系统(SAS)创建了一个强大的平台。为了提高系统的可靠性和效率,变电站通信网络(SCN)必须具有更快的响应速度,特别是在发生电气故障时。根据IEC 61850标准,传输和控制数据的端到端(ETE)时间延迟必须小于4毫秒,这在数据包尺寸较小时是可以实现的。但是,当报文大小较大时,会超过延迟时间限制。因此,发送较小的数据包可能是一种解决方案,但是发送太多较小的数据包可能会在网络中造成拥塞,从而导致另一个延迟问题。本文介绍了在优化网络工程工具(OPNET)环境下设计的一种不同的网络拓扑结构,该拓扑结构能够在IEC 61850标准推荐的4毫秒的时延限制内传输和控制更大的数据包。
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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