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Dual State-space Fidelity Blade (D-STAB): A Novel Stealthy Cyber-physical Attack Paradigm

Dual State-space Fidelity Blade (D-STAB): A Novel Stealthy Cyber-physical Attack Paradigm

来源:Arxiv_logoArxiv
英文摘要

This paper presents a novel cyber-physical attack paradigm, termed the Dual State-Space Fidelity Blade (D-STAB), which targets the firmware of core cyber-physical components as a new class of attack surfaces. The D-STAB attack exploits the information asymmetry caused by the fidelity gap between high-fidelity and low-fidelity physical models in cyber-physical systems. By designing precise adversarial constraints based on high-fidelity state-space information, the attack induces deviations in high-fidelity states that remain undetected by defenders relying on low-fidelity observations. The effectiveness of D-STAB is demonstrated through a case study in cyber-physical battery systems, specifically in an optimal charging task governed by a Battery Management System (BMS).

Jiajun Shen、Hao Tu、Fengjun Li、Morteza Hashemi、Di Wu、Huazhen Fang

热工量测、热工自动控制自动化技术、自动化技术设备

Jiajun Shen,Hao Tu,Fengjun Li,Morteza Hashemi,Di Wu,Huazhen Fang.Dual State-space Fidelity Blade (D-STAB): A Novel Stealthy Cyber-physical Attack Paradigm[EB/OL].(2025-07-09)[2025-07-21].https://arxiv.org/abs/2507.06492.点此复制

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