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Robust protection scheme against cyber-physical attacks in power systems

机译:强大的电力系统网络物理攻击防护方案

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摘要

This study presents a robust defence strategy in reaction to destabilising cyber-physical attacks launched against linear time invariant systems and its application to power systems. The proposed protection scheme aims at making the dynamics of a selected subsystem decoupled from the dynamics of the subsystem targeted by the attack. The standard decoupling methods are made robust, in spite of poor information about plant parameters and lack of state measurement, with the aid of an extended observer. In this way, it is possible to keep the protected dynamics arbitrarily close to the one of a suitably chosen stable system, so long as the dynamics being targeted by the attack remain within the prescribed bounds. The proposed defence strategy is presented in the context of modern power systems, wherein generators and transmission networks are operated by different players and shown to be effective using the Western System Coordinating Council 9-bus test power network.
机译:这项研究提出了一种强大的防御策略,以应对针对线性时不变系统的不稳定的网络物理攻击及其在电力系统中的应用。提出的保护方案旨在使选定子系统的动态与攻击目标子系统的动态分离。尽管有关工厂参数的信息不多且缺乏状态测量,但在扩展的观察员的帮助下,标准的去耦方法仍然非常可靠。以此方式,可以将受保护的动力学任意地保持在适当选择的稳定系统之一附近,只要被攻击作为目标的动力学保持在规定的范围之内。在现代电力系统中提出了提出的防御策略,其中发电机和输电网络由不同的参与者运营,并且使用西方系统协调委员会的9总线测试电力网络证明是有效的。

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