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Design of Load Forecast Systems Resilient Against Cyber-Attacks

机译:抵御网络攻击的负荷预测系统设计

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Load forecast systems play a fundamental role the operation in power systems, because they reduce uncertainties about the system's future operation. An increasing demand for precise forecasts motivates the design of complex models that use information from different sources, such as smart appliances. However, untrusted sources can introduce vulnerabilities in the system. For example, an adversary may compromise the sensor measurements to induce errors in the forecast. In this work, we assess the vulnerabilities of load forecast systems based on neural networks and propose a defense mechanism to construct resilient forecasters. We model the strategic interaction between a defender and an attacker as a Stackelberg game, where the defender decides first the prediction scheme and the attacker chooses afterwards its attack strategy. Here, the defender selects randomly the sensor measurements to use in the forecast, while the adversary calculates a bias to inject in some sensors. We find an approximate equilibrium of the game and implement the defense mechanism using an ensemble of predictors, which introduces uncertainties that mitigate the attack's impact. We evaluate our defense approach training forecasters using data from an electric distribution system simulated in GridLAB-D.
机译:负荷预测系统在电力系统中起着基本作用,因为它们减少了有关系统未来运行的不确定性。对精确预测的需求不断增长,促使人们使用来自不同来源(例如智能设备)的信息来设计复杂的模型。但是,不受信任的来源可能会在系统中引入漏洞。例如,对手可能会破坏传感器的测量结果,从而导致预测错误。在这项工作中,我们评估了基于神经网络的负荷预测系统的脆弱性,并提出了构建弹性预测器的防御机制。我们将防御者和攻击者之间的战略互动建模为Stackelberg游戏,在该游戏中,防御者首先确定预测方案,然后攻击者选择其攻击策略。在此,防御者随机选择传感器测量值以用于预测,而对手则计算偏差以注入一些传感器。我们找到了游戏的近似平衡,并使用一组预测变量来实施防御机制,这引入了减轻攻击影响的不确定性。我们使用来自GridLAB-D中模拟的配电系统的数据来评估我们的防御方法训练预测员。

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