Enabling Process Bus Communication for Digital Substations Using 5G Wireless System

N. Kumari, Fedor Chernogorov, Ikram Ashraf, J. Torsner, Jonas Kronander, Gustav Wikström, S. Sahoo
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引用次数: 5

Abstract

Digital substations (DS) became a large evolutionary advancement for electrical substations with introduction of IEC 61850 communication protocol due to minimized digital and control infrastructure involved. However, maintenance cost and simplicity can further be improved if wired communication between the control room and switchyard is complemented or substituted with a wireless solution. Wireless connectivity can bring benefits to both brown- and greenfield installations, to avoid cumbersome and expensive cable trenching or be used as a redundancy solution. Ultra-reliable low-latency communication (URLLC) technology developed in 5G networks promises support in this field. This paper presents performance results for 4G and 5G wireless systems enabling communication between switch yard and control room in digital substations. Evaluations of a 4G LTE Rel. 13 system was performed by measurements in lab environment and the performance of a 5G new radio (NR) network at the substation coexisting with surrounding macro network is done with system level simulations. Results of the tests and evaluations demonstrate the limitations of 4G LTE Rel. 13 connectivity, as well as capabilities to fulfill the communication needs in substation case using 5G NR system.
利用5G无线系统实现数字变电站的进程总线通信
随着IEC 61850通信协议的引入,由于所涉及的数字和控制基础设施最小化,数字变电站(DS)成为变电站的一大进步。然而,如果控制室和开关站之间的有线通信被无线解决方案补充或取代,维护成本和简单性可以进一步提高。无线连接可以为棕地和绿地设施带来好处,以避免繁琐和昂贵的电缆壕沟或用作冗余解决方案。5G网络中开发的超可靠低延迟通信(URLLC)技术有望在这一领域提供支持。本文介绍了实现数字变电站开关站与控制室通信的4G和5G无线系统的性能结果。通过在实验室环境中进行测量对4G LTE Rel. 13系统进行了评估,并通过系统级仿真完成了变电站与周围宏网络共存的5G新无线电(NR)网络的性能。测试和评估的结果证明了4G LTE Rel. 13连接的局限性,以及使用5G NR系统满足变电站情况下通信需求的能力。
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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