Authors
Abdallah Farraj
Published in
Sensors (Basel, Switzerland). Volume 26. Issue 15. Aug 04, 2026. Epub Aug 04, 2026.
Abstract
Pilot contamination attacks (PCAs) pose a great physical-layer threat to modern multiple-input-multiple-output (MIMO) systems by exploiting channel reciprocity to corrupt channel state information estimation. While existing literature acknowledges this vulnerability, precise parametric threat models that capture the transition from active channel estimation poisoning to data exploitation remain scarce. This article addresses this gap by developing a novel, physical-layer parameterized PCA framework structured as a two-stage operational attack: channel estimation poisoning and adaptive information contamination. We formulate an algorithmic attack strategy that systematically manipulates base transceiver station precoding and beamforming weights. This formulation allows us to quantify the precise degradation of the system through the lens of the confidentiality, integrity, and availability (CIA) triad, specifically mapping the adversary's security gains against legitimate users' signal-to-noise ratio degradation. Finally, we leverage this parametric threat model to outline a qualitative roadmap of actionable detection vectors and structural mitigation strategies. The proposed algorithmic attack serves as an evaluation benchmark and an analytical baseline for conceptualizing resilient architectures in emerging physical-layer security frameworks.
PMID:
42590709
Bibliographic data and abstract were imported from PubMed on 13 Aug 2026.
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