TY - JOUR
T1 - Secure State Estimation
T2 - A Novel Retransmission and Roll-Back Mechanism
AU - Xu, Hongyuan
AU - Wang, Wei
AU - Yan, Jiaqi
AU - Gao, Qing
N1 - Publisher Copyright:
© 2013 IEEE.
PY - 2026
Y1 - 2026
N2 - As the scale of networked control systems gradually expands, an increasing number of sensors are installed to monitor the operational status of the systems. This paper focuses on the problem of secure state estimation for multi-sensor networked control systems under cyber attacks, utilizing available retransmitted information. Firstly, we establish retransmission rules for data considered suspicious due to additive external attacks, based on which a novel state estimation method called distributed retransmission and roll-back estimator (DRR-Estimator) is proposed. More specifically, this designed estimator incorporates a term for historical discarded data, which is able to enhance the estimation performance. Using linear matrix inequalities, we prove that the estimation error converges to a finite bound exponentially in mean square, even in the presence of attacks. It is further demonstrated that the proposed estimator works effectively under time delays. Finally, the proposed method is tested effectively in a regional temperature monitoring system.
AB - As the scale of networked control systems gradually expands, an increasing number of sensors are installed to monitor the operational status of the systems. This paper focuses on the problem of secure state estimation for multi-sensor networked control systems under cyber attacks, utilizing available retransmitted information. Firstly, we establish retransmission rules for data considered suspicious due to additive external attacks, based on which a novel state estimation method called distributed retransmission and roll-back estimator (DRR-Estimator) is proposed. More specifically, this designed estimator incorporates a term for historical discarded data, which is able to enhance the estimation performance. Using linear matrix inequalities, we prove that the estimation error converges to a finite bound exponentially in mean square, even in the presence of attacks. It is further demonstrated that the proposed estimator works effectively under time delays. Finally, the proposed method is tested effectively in a regional temperature monitoring system.
KW - DRR-Estimator
KW - Secure state estimation
KW - retransmission strategy
KW - roll-back mechanism
KW - time delays
UR - https://www.scopus.com/pages/publications/105019616731
U2 - 10.1109/TNSE.2025.3621283
DO - 10.1109/TNSE.2025.3621283
M3 - 文章
AN - SCOPUS:105019616731
SN - 2327-4697
VL - 13
SP - 2852
EP - 2870
JO - IEEE Transactions on Network Science and Engineering
JF - IEEE Transactions on Network Science and Engineering
ER -