论文标题

网络物理攻击利用亚同步共振

Cyber-Physical Attack Leveraging Subsynchronous Resonance

论文作者

Li, Bosong, Zhang, Baosen, Kirschen, Daniel S.

论文摘要

本文讨论了网络攻击如何利用涡轮发电机轴上的扭转共振,从而对电力系统造成严重的物理损害。如果攻击者能够接管电池能量存储设备的控制,则可以以与发电机的一个亚同步共振频率相匹配的频率调节该设备的注入。注射的微小变化可能足以激发这些机械共振之一,从而导致金属疲劳,并最终导致发电机轴的灾难性失败。使用机电系统的状态空间模型,纸张发展了传递功能,将恶意注射的大小与连接到轴的各种质量的速度和角度的振荡幅度联系起来。两个面积电力系统的数值结果证明了易受攻击的频率的存在,并表明可以触发损坏的机械振荡而不会在发电机端子上引起易于检测的信号。

This paper discusses how a cyber attack could take advantage of torsional resonances in the shaft of turbo-generators to inflict severe physical damage to a power system. If attackers were able to take over the control of a battery energy storage device, they could modulate the injection of this device at a frequency that matches one of the sub-synchronous resonance frequencies of a generator. Small changes in injection might be sufficient to excite one of these mechanical resonances, resulting in metal fatigue and ultimately a catastrophic failure in the shaft of the generator. Using a state-space model of the electromechanical system, the paper develops transfer functions linking the magnitude of the malicious injections to the magnitude of oscillations in the speed and angle of the various masses connected to the shaft. Numerical results from a two-area power system demonstrate the existence of vulnerable frequencies and show that damaging mechanical oscillations can be triggered without causing easily detectable signals at the generator terminals.

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