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Transactive Energy to Thwart Load Altering Attacks on Power Distribution Systems

机译:横移能量挫伤负荷改变配电系统的攻击

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The automatic generation control mechanism in power generators comes into operation whenever an over-supply or under-supply of energy occurs in the power grid. It has been shown that the automatic generation control mechanism is highly vulnerable to load altering attacks. In this type of attack, the power consumption of multiple electric loads in power distribution systems is remotely altered by cyber attackers in such a way that the automatic generation control mechanism is disrupted and is hindered from performing its pivotal role. The existing literature on load altering attacks has studied implementation, detection, and location identification of these attacks. However, no prior work has ever studied design of an attack-thwarting system that can counter load altering attacks, once they are detected in the power grid. This paper addresses the above shortcoming by proposing an attack-thwarting system for countering load altering attacks. The proposed system is based on provoking real-time adjustment in power consumption of the flexible loads in response to the frequency disturbances caused by the load altering attacks. To make the adjustments in-proportion to the frequency disturbances, the proposed attack-thwarting system uses a transactive energy framework to establish a coordination between the flexible loads and the power grid operator.
机译:每当在电网中发生电量的过度供电或电源供应时,发电机中的自动产生控制机构就会运行。已经表明,自动生成控制机制非常易于负载改变攻击。在这种类型的攻击中,通过网络攻击者远程改变了配电系统中多电载荷的功耗,使得自动产生控制机制被破坏并且受到枢转作用的阻碍。现有的负载改变攻击的文献已经研究了这些攻击的实施,检测和位置识别。但是,一旦在电网中检测到,就没有研究了可以对抗载荷变化攻击的攻击挫败系统的设计。本文通过提出用于抵抗负荷改变攻击的攻击挫折系统来解决上述缺点。所提出的系统基于响应于由负载改变攻击引起的频率干扰而激发柔性负载的功耗的实时调整。为了使调整与频率干扰成比例地,所提出的攻击 - 突然系统使用透气能量框架来建立柔性负载和电网操作员之间的协调。

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