数字变电站应用的通信带宽考虑

Jake Groat, Galina S. Antonova Benton Vandiver, B. Vasudevan
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引用次数: 0

摘要

可靠的数据通信基础设施为智能电子设备(ied)、主开关设备和其他变电站设备之间的数字信息交换提供了可靠的数据通信基础设施,这对电力行业向数字化变电站的转变至关重要。了解数据通信需求对于正确设计通信系统和满足数字化变电站的应用要求是非常重要的。通信带宽受传输介质的物理特性和ied的处理能力的限制。通信带宽是基于以太网的数据交换的主要关注点,也是设计数字变电站时要考虑的关键特性之一。本文分析了IEC 61850采样值和通用面向对象变电站事件(GOOSE)消息等各种数字化变电站技术对通信带宽的使用情况。回顾了网络技术和通信协议。然后,它根据以太网帧结构和可设置的传输速率,为典型应用程序提供通信带宽计算,可根据设备数量进行扩展。理论数据通过对北美各种数字化变电站项目和实验室装置的测量进行验证。这些理论和经验数据将有助于电力公司了解数字化变电站应用的实际数据通信带宽需求;协助他们正确和优化设计通信基础设施,以实现数字化变电站保护和控制系统的最高精度和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Communication bandwidth considerations for digital substation applications
Essential for the power industry's move towards digital substations is empowered by reliable data communication infrastructure designed for the exchange of digital information between intelligent electronic device (IEDs), primary switchgear and other substation equipment. Understanding data communication needs is important for proper communication system design and fulfillment of digital substation applications requirements. The communication bandwidth is constrained by the physical characteristics of the transmission medium and processing capabilities of the IEDs. Communication bandwidth is a major concern for Ethernet-based data exchange and is one of the key characteristics to consider when designing a digital substation. This paper analyzes communication bandwidth usage by various digital substation technologies including IEC 61850 sampled values and Generic Object-Oriented Substation Event (GOOSE) messages. Network technology and communication protocols are reviewed. It then provides communication bandwidth calculations for typical applications, scalable for number of devices, based on Ethernet frame structure and settable transmission rates., Theoretical data is validated by measurements made for various digital substation projects and lab installations in North America. Such theoretical and empirical data will help utilities to understand practical data communication bandwidth needs of digital substation applications; assisting them in properly and optimally designing communication infrastructure to achieve the highest accuracy and reliability for digital substation protection and control systems.
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