熄灯后的谈话:电网恢复的自组织网络

J. Janak, D. Chee, Hema Retty, A. Baloian, H. Schulzrinne
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引用次数: 0

摘要

当一个地区的电网遭受重大停电时,例如,在灾难性的网络攻击之后,可能需要“黑启动”,即电网缓慢重启,小心翼翼地逐步增加发电量和需求。为了确保安全有效的黑启动,电网控制中心必须能够与现场人员以及监控和数据采集(SCADA)系统进行通信。语音和文字交流尤其重要。作为美国国防高级研究计划局(DARPA)快速攻击检测、隔离和表征系统(RADICS)项目的一部分,我们设计、测试和评估了一个名为“凤凰安全应急网络”(PhoenixSEN)的自配置网状网络原型。在黑启动恢复期间,PhoenixSEN为电网主要通信网络提供了安全的替代方案。该网络结合了现有技术和新技术,可以与各种链路层协议一起工作,强调可管理性和自动配置,并为人员和设备的协调提供服务和应用,包括语音、文本和SCADA通信。我们讨论了PhoenixSEN的架构,并通过一系列darpa主导的演习评估了现实网格基础设施的原型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Talking After Lights Out: An Ad Hoc Network for Electric Grid Recovery
When the electrical grid in a region suffers a major outage, e.g., after a catastrophic cyber attack, a “black start” may be required, where the grid is slowly restarted, carefully and incrementally adding generating capacity and demand. To ensure safe and effective black start, the grid control center has to be able to communicate with field personnel and with supervisory control and data acquisition (SCADA) systems. Voice and text communication are particularly critical. As part of the Defense Advanced Research Projects Agency (DARPA) Rapid Attack Detection, Isolation, and Characterization Systems (RADICS) program, we designed, tested and evaluated a self-configuring mesh network prototype called the Phoenix Secure Emergency Network (PhoenixSEN). PhoenixSEN provides a secure drop-in replacement for grid's primary communication networks during black start recovery. The network combines existing and new technologies, can work with a variety of link-layer protocols, emphasizes manageability and auto-configuration, and provides services and applications for coordination of people and devices including voice, text, and SCADA communication. We discuss the architecture of PhoenixSEN and evaluate a prototype on realistic grid infrastructure through a series of DARPA-led exercises.
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