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Detection of Faults and Attacks Including False Data Injection Attack in Smart Grid Using Kalman Filter

机译:使用卡尔曼滤波器检测智能电网中的故障和攻击,包括虚假数据注入攻击

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摘要

By exploiting the communication infrastructure among the sensors, actuators, and control systems, attackers may compromise the security of smart-grid systems, with techniques such as denial-of-service (DoS) attack, random attack, and data-injection attack. In this paper, we present a mathematical model of the system to study these pitfalls and propose a robust security framework for the smart grid. Our framework adopts the Kalman filter to estimate the variables of a wide range of state processes in the model. The estimates from the Kalman filter and the system readings are then fed into the -detector or the proposed Euclidean detector. The -detector is a proven effective exploratory method used with the Kalman filter for the measurement of the relationship between dependent variables and a series of predictor variables. The -detector can detect system faults/attacks, such as DoS attack, short-term, and long-term random attacks. However, the studies show that the -detector is unable to detect the statistically derived false data-injection attack. To overcome this limitation, we prove that the Euclidean detector can effectively detect such a sophisticated injection attack.
机译:通过利用传感器,执行器和控制系统之间的通信基础架构,攻击者可能会利用拒绝服务(DoS)攻击,随机攻击和数据注入攻击等技术来损害智能电网系统的安全性。在本文中,我们提出了用于研究这些陷阱的系统数学模型,并提出了用于智能电网的健壮的安全框架。我们的框架采用卡尔曼滤波器来估计模型中各种状态过程的变量。然后,将来自卡尔曼滤波器的估计值和系统读数输入到-检测器或提议的欧几里得检测器中。 -detector是一种经过验证的有效探索性方法,与Kalman滤波器一起用于测量因变量和一系列预测变量之间的关系。 -detector可以检测系统故障/攻击,例如DoS攻击,短期和长期随机攻击。但是,研究表明,-detector无法检测到统计得出的虚假数据注入攻击。为了克服这个限制,我们证明了欧几里得检测器可以有效地检测到这种复杂的注入攻击。

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