English

On the Stealth of Unbounded Attacks Under Non-Negative-Kernel Feedback

Systems and Control 2025-12-30 v1 Systems and Control

Abstract

The stealth of false data injection attacks (FDIAs) against feedback sensors in linear time-varying (LTV) control systems is investigated. In that regard, the following notions of stealth are pursued: For some finite ϵ>0\epsilon > 0, i) an FDIA is deemed ϵ\epsilon-stealthy if the deviation it produces in the signal that is monitored by the anomaly detector remains ϵ\epsilon-bounded for all time, and ii) the ϵ\epsilon-stealthy FDIA is further classified as untraceable if the bounded deviation dissipates over time (asymptotically). For LTV systems that contain a chain of q1q \geq 1 integrators and feedback controllers with non-negative impulse-response kernels, it is proved that polynomial (in time) FDIA signals of degree aa - growing unbounded over time - will remain i) ϵ\epsilon-stealthy, for some finite ϵ>0\epsilon > 0, if aqa \leq q, and ii) untraceable, if a<qa < q. These results are obtained using the theory of linear Volterra integral equations.

Keywords

Cite

@article{arxiv.2512.22646,
  title  = {On the Stealth of Unbounded Attacks Under Non-Negative-Kernel Feedback},
  author = {Kamil Hassan and Henrik Sandberg},
  journal= {arXiv preprint arXiv:2512.22646},
  year   = {2025}
}

Comments

8 pages, 3 figures, submitted to IFAC World Congress 2026

R2 v1 2026-07-01T08:42:54.948Z