TY - JOUR
T1 - Data-driven linear quadratic regulator design for unknown linear systems against false data injection attack
AU - You, Lijie
AU - Hua, Yue
AU - Fang, Jianyin
AU - Wen, Daolin
AU - Xia, Yuanqing
N1 - Publisher Copyright:
© 2026 Informa UK Limited, trading as Taylor & Francis Group.
PY - 2026
Y1 - 2026
N2 - Among the diverse forms of cyber-attacks, false data injection (FDI) attacks are prone to occur and have become prominent threats. The present paper is concerned with the design of data-driven controllers of unknown cyber physical systems (CPSs) subjected to FDI attacks, using input-state data but no model knowledge. A core aspect of this issue revolves around the modelling of unknown FDI attacked system in the context of data-driven control. To solve the problem, we formulate an FDI attacks as a convex optimisation problem using the (Formula presented.) -norm, a FDI attacks channel model, and stability constraints. First, based on the input-state data sequences, the optimal feedback control law is designed to minimise the (Formula presented.) -norm of the closed-loop system's transfer function. The attacker's capability is modelled as a bounded constraint on attack power. The Schur complement lemma and a regularisation term provide sufficient conditions for the Schur stability of the FDI attacked system. The effectiveness of the proposed approach can be proved through a numerical example.
AB - Among the diverse forms of cyber-attacks, false data injection (FDI) attacks are prone to occur and have become prominent threats. The present paper is concerned with the design of data-driven controllers of unknown cyber physical systems (CPSs) subjected to FDI attacks, using input-state data but no model knowledge. A core aspect of this issue revolves around the modelling of unknown FDI attacked system in the context of data-driven control. To solve the problem, we formulate an FDI attacks as a convex optimisation problem using the (Formula presented.) -norm, a FDI attacks channel model, and stability constraints. First, based on the input-state data sequences, the optimal feedback control law is designed to minimise the (Formula presented.) -norm of the closed-loop system's transfer function. The attacker's capability is modelled as a bounded constraint on attack power. The Schur complement lemma and a regularisation term provide sufficient conditions for the Schur stability of the FDI attacked system. The effectiveness of the proposed approach can be proved through a numerical example.
KW - Data-driven control
KW - false data injection attack
KW - linear quadratic regulator
KW - optimal control
UR - https://www.scopus.com/pages/publications/105043380494
U2 - 10.1080/00207721.2026.2647376
DO - 10.1080/00207721.2026.2647376
M3 - Article
AN - SCOPUS:105043380494
SN - 0020-7721
JO - International Journal of Systems Science
JF - International Journal of Systems Science
ER -