Expanding protection and control communications networks with wireless radio links

Laura Rogers, Tom Bartman, B. Rowland
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Abstract

Extending reliable and dependable communications for protection and control applications beyond the substation fence to additional sites and field devices can sometimes be a challenging task. Uneven terrain, distance, or other factors can make running cable difficult or impossible. In some cases, wireless communication is a cost-effective and practical alternative to pulling cable. Radios have proven to be an effective means of extending communications for supervisory control and data acquisition (SCADA) and engineering access, as well as for critical protection and control applications using serial communications. Low-latency Ethernet protocols like Generic Object-Oriented Substation Event (GOOSE) are becoming popular for high-speed, point-to-multipoint signaling protection and control applications. Radios used in protection and control should be evaluated for the specific application for which they are intended. This paper examines the application of GOOSE over Ethernet radios and the associated challenges. The paper shares results from a real-world implementation, including results from GOOSE latency tests for protection and control applications.
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扩大保护和控制通信网络与无线无线电链路
将保护和控制应用的可靠和可靠的通信扩展到变电站围栏以外的其他站点和现场设备有时是一项具有挑战性的任务。不平坦的地形、距离或其他因素可能使电缆运行困难或不可能。在某些情况下,无线通信是一种成本效益高且实用的替代方案。无线电已被证明是扩展监控和数据采集(SCADA)和工程访问通信的有效手段,以及使用串行通信的关键保护和控制应用。低延迟以太网协议,如通用面向对象变电站事件(GOOSE),在高速、点对多点信令保护和控制应用中越来越受欢迎。用于保护和控制的无线电应根据其预期的具体应用进行评估。本文研究了GOOSE在以太网无线电上的应用以及相关的挑战。本文分享了实际实现的结果,包括用于保护和控制应用程序的GOOSE延迟测试的结果。
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