DocumentCode
4752
Title
Blind False Data Injection Attack Using PCA Approximation Method in Smart Grid
Author
Zong-Han Yu ; Wen-Long Chin
Author_Institution
Nat. Cheng Kung Univ., Tainan, Taiwan
Volume
6
Issue
3
fYear
2015
fDate
May-15
Firstpage
1219
Lastpage
1226
Abstract
Accurate state estimation is of paramount importance to maintain normal operations of smart power grids. However, recent research shows that carefully produced attacks with the knowledge of the grid topology, i.e., Jacobian matrix, can bypass the bad data detection (BDD) system. The BDD is used to ensure the integrity of state estimation to filter faulty measurements introduced by device malfunctions or malicious attacks. However, to construct the false data injection attack vectors, a common assumption in most prior works on false data injection attacks is that the attacker has complete knowledge about the power grid topology and transmission-line admittances. By contrast, this paper studies the general problem of blind false data injection attacks using the principal component analysis approximation method without the knowledge of Jacobian matrix and the assumption regarding the distribution of state variables. The proposed attack is proven to be approximately stealthy.1 The performance of the proposed attack is analyzed. Simulations confirm the performance of the proposed method.
Keywords
Jacobian matrices; approximation theory; principal component analysis; smart power grids; state estimation; Jacobian matrix; PCA approximation; approximation method; bad data detection system; blind false data injection attack; false data injection attacks; filter faulty measurements; malicious attacks; power grid topology; principal component analysis; smart grid; smart power grids; state estimation; transmission-line admittances; Approximation methods; Jacobian matrices; Principal component analysis; Smart grids; State estimation; Topology; Vectors; Bad data detection (BDD); Jacobian matrix; blind and stealthy attack; principal component analysis (PCA); smart power grid; state estimation;
fLanguage
English
Journal_Title
Smart Grid, IEEE Transactions on
Publisher
ieee
ISSN
1949-3053
Type
jour
DOI
10.1109/TSG.2014.2382714
Filename
7001709
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