CRSPJun 25

Physical Layer Authentication With Channel Knowledge Maps in Indoor Environments

arXiv:2606.270447.31 citations
Predicted impact top 55% in CR · last 90 daysOriginality Incremental advance
AI Analysis

Addresses the challenge of authenticating mobile devices in indoor multipath environments for wireless security.

Proposed a physical layer authentication mechanism for moving devices in indoor environments using channel knowledge maps, achieving effective authentication under both random and optimal attacks in ray-tracing simulations.

Physical layer authentication (PLA) allows to authenticate the user by comparing measurements over time, assuming their time consistency or by modeling their evolution. However, these assumptions become problematic when devices are in motion and in indoor environments due to multipath propagation and obstructions. In this paper, we propose a PLA mechanism for moving devices in indoor environments, where multiple access points (APs) estimate the dominant channel tap path loss (PL) and angle of arrival (AoA) from the received signals and compare them with previously collected channel knowledge maps (CKMs). Specifically, the measurements are compared to those in the neighborhood of the previously known position obtained from CKMs. A comprehensive security analysis is conducted under both random and optimal attacks. Numerical results in a representative indoor scenario, with CKM obtained via ray tracing, validate the effectiveness of the proposed PLA approach.

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