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Stabilising control strategy for cyber-physical power systems

机译:网络物理电力系统稳定控制策略

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摘要

The cyber-physical nature of electric power systems has increased immensely over the past decades, with advanced communication infrastructure paving the way. It is now possible to design wide-area controllers, relying on remote monitor and control of devices that can tackle power system stability problems more effectively than local controllers. However, their performance and security relies extensively on the communication infrastructure and can make power systems vulnerable to disturbances emerging on the cyber side of the system. In this study, the authors investigate the effect of communication delays on the performance of wide-area damping controllers designed to stabilise oscillatory modes in a cyber-physical power system (CPPS). They propose a rule-based control strategy that combines wide-area and traditional local stabilising controllers to increase the performance and maintain the stable operation of CPPS. The proposed strategy is validated on a reduced CPPS equivalent model of Great Britain.
机译:电力系统的网络物质性质在过去的几十年中增加了巨大的沟通,通过先进的通信基础设施铺平了道路。现在可以设计广域控制器,依靠远程监视器和控制能够比本地控制器更有效地解决电力系统稳定性问题的设备。然而,它们的性能和安全性广泛依赖于通信基础设施,并且可以使电力系统容易受到系统的网络侧的扰动。在这项研究中,作者调查了通信延迟对广域阻尼控制器的性能的影响,旨在稳定网络物理电力系统(CPPS)中的振荡模式。他们提出了一种基于规则的控制策略,将广域和传统的局部稳定控制器结合起来,以提高性能并保持CPP的稳定运行。拟议的策略是关于大英国的减少的CPPS等效模型验证。

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