Communication Security and Sensing Privacy in FMCW-Based ISAC Through Signal Modulation

Fuente: arXiv
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Main Authors: Temiz, Murat, Masouros, Christos
Format: Preprint
Published: 2026
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author Temiz, Murat
Masouros, Christos
author_facet Temiz, Murat
Masouros, Christos
contents This study proposes a novel radar-centric signaling design and architecture for secure integrated sensing and communication (ISAC) systems. The proposed framework is designed to provide robust physical layer security for data transmission while simultaneously enhancing sensing privacy. It employs index modulation and phase coding over frequency-modulated continuous-wave radar (FMCW) chirps, where index modulation (IM) provides an outer layer of data security, and we explicitly design the phase coding (PC) to perturb the resulting signal's ambiguity function (AF) to enhance sensing privacy. This design reduces the risk of unauthorized surveillance by rendering target velocity estimation practically infeasible for unauthorized passive sensing hardware (i.e., a sensing eavesdropper, S-Eve) and significantly impairing its range estimation capabilities. Furthermore, this study also presents the transmitter and receiver architectures required for effective modulation and demodulation of the proposed ISAC signaling and for performing sensing at the legitimate sensing hardware. Simulation results show that the proposed approach achieves high data throughput while enhancing communication security and sensing privacy.
format Preprint
id arxiv_https___arxiv_org_abs_2605_23429
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Communication Security and Sensing Privacy in FMCW-Based ISAC Through Signal Modulation
Temiz, Murat
Masouros, Christos
Signal Processing
Cryptography and Security
This study proposes a novel radar-centric signaling design and architecture for secure integrated sensing and communication (ISAC) systems. The proposed framework is designed to provide robust physical layer security for data transmission while simultaneously enhancing sensing privacy. It employs index modulation and phase coding over frequency-modulated continuous-wave radar (FMCW) chirps, where index modulation (IM) provides an outer layer of data security, and we explicitly design the phase coding (PC) to perturb the resulting signal's ambiguity function (AF) to enhance sensing privacy. This design reduces the risk of unauthorized surveillance by rendering target velocity estimation practically infeasible for unauthorized passive sensing hardware (i.e., a sensing eavesdropper, S-Eve) and significantly impairing its range estimation capabilities. Furthermore, this study also presents the transmitter and receiver architectures required for effective modulation and demodulation of the proposed ISAC signaling and for performing sensing at the legitimate sensing hardware. Simulation results show that the proposed approach achieves high data throughput while enhancing communication security and sensing privacy.
title Communication Security and Sensing Privacy in FMCW-Based ISAC Through Signal Modulation
topic Signal Processing
Cryptography and Security
url https://arxiv.org/abs/2605.23429