输电系统控制中心SCADA基础设施健康状态实时监测

Jaime D. Pinzón, T. Osorno, J. Mola, Alexandra Valencia
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引用次数: 3

摘要

由于现代电力系统由大量元器件组成,其运行受到技术限制,因此监控与数据采集(SCADA)基础设施对输电网的运行至关重要。在SCADA的众多设备中,一个设备的故障可能导致一个变电站、一个地区甚至整个国家的监督和控制出现故障;并且因为实现SCADA系统所需的硬件基础设施可能会在通信网络、服务器等设备数量方面变得非常庞大;对于任何输变电控制中心的SCADA基础设施,拥有一个结构良好、高效的监控系统就变得至关重要。本文提出了一种基于简单网络管理协议(SNMP)的监控方案,用于获取这些系统中涉及的设备,如服务器、通信交换机、工作站、路由器和防火墙的实时数据;同时,对SCADA和能源管理系统(EMS)的关键软件功能进行实时监控。采集的数据被处理成早期预警信号(警报)、趋势图和实时可视化数据,使管理员能够以预防性而非被动的方式管理SCADA基础设施,从而确保操作不受故障和事件的影响。该方案在南美洲的四个电力传输控制中心实施,这些中心运行高达500千伏的电网。这种新方案的实施显示出明显的好处,因为系统中可能存在的风险的检测、诊断和解决方案可以在比以前更早的阶段进行管理,这增加了SCADA系统基础设施的可用性和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time Health Condition Monitoring of SCADA Infrastructure of Power Transmission Systems Control Centers
The infrastructure for the supervision, control and data acquisition (SCADA) is critical for the operation of the electrical transmission network due to the complexity of the modern electrical power systems which are made of a big number of components and technical constraints for its operation. One failure in one of the many devices that are part of the SCADA could produce a failure in the supervision and control of one substation, one region or even a whole country; and because the hardware infrastructure needed to implement a SCADA system might come to be massive in terms of the numbers of devices for the communication network, servers and more; it becomes crucial to have a well-structured and efficient monitoring system for the SCADA infrastructure of any power transmission control center. In this paper it is proposed a monitoring scheme based on the Simple Network Management Protocol (SNMP) used to get realtime data of the devices involved in these systems, such as: servers, communication switches, workstations, routers and firewalls; and also, the real-time monitoring of essential software functions, not only from the SCADA but from the Energy Management System (EMS) as well. The acquired data is processed into early warning signs (alarms), tendency graphs and visualizations with real-time data that allows the administrators to manage the SCADA infrastructure in a preventive and not in a reactive manner, which secures the operation against failures and events. This scheme was implemented in four electrical power transmission control centers in South America which operate up to 500 kV grids. The implementation showed clear benefits in the use of this novel scheme because the detection, diagnostics and solution for possible risks in the system could be managed in an earlier stage than it used to be, which incremented the availability and reliability of the SCADA system infrastructure.
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