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Malicious Control of an Active Load in an Islanded Mixed-Source Microgrid

机译:孤岛混合源微电网中的活性负荷的恶意控制

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Power-electronic connected resources are slowly shifting power system dynamics from being dominated by the physics of synchronous machines to being determined by human-designed control loops within power electronic converters. This transition offers new flexibility in control design which, consequently, also increases the cyber-physical attack surface. Within this work we consider the use of eigenstructure assignment, i.e. both eigenvalue and eigenvector design, for the purpose of designing a destabilizing linear state-feedback controller for an active load. To this end, we show that at high levels of converter penetration there may exist an electromagnetic mode, in addition to the electromechanical mode reported in prior literature, that an adversary might seek to destabilize. In addition, we consider two levels of controllability that an adversary may have for an active load and show that, dependent on the mode the adversary is seeking to destabilize, the resulting manifestation of the attack on the grid may be different.
机译:功率 - 电子连接资源正在缓慢转化电力系统动态,该动力系统由同步机的物理学主导地由电力电子转换器内的人类设计的控制环路确定。这种转变在控制设计中提供了新的灵活性,因此,这也增加了网络物理攻击表面。在这项工作中,我们考虑使用特征化作业,即特征值和特征向量设计,以设计用于有效负载的稳定的线性状态反馈控制器。为此,我们表明,在高水平的转换器穿透下,可能存在电磁模式,除了在现有文献中报告的机电模式之外,对手可能会寻求破坏稳定。此外,我们认为对手可能具有有效负载的两个可控性和表明,取决于对手的模式正在寻求破坏稳定的模式,所产生的攻击表现在网格上可能是不同的。

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