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Main Authors: Wang, Zhendong, Meng, Chenyang, Yang, Jun, Wang, Jiayuan, Li, Yin, Jiang, Linshan, Zhang, Jin
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2511.02949
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author Wang, Zhendong
Meng, Chenyang
Yang, Jun
Wang, Jiayuan
Li, Yin
Jiang, Linshan
Zhang, Jin
author_facet Wang, Zhendong
Meng, Chenyang
Yang, Jun
Wang, Jiayuan
Li, Yin
Jiang, Linshan
Zhang, Jin
contents The 6G wireless networks impose extremely high requirements on physical layer secure communication. However, the existing solutions usually can only achieve one-dimensional physical layer security (PLS) in the angle dimension, and cannot achieve PLS in the range dimension. In this paper, we propose the NF-SecRIS system, the first range-angle-dependent (2D) PLS near-field communication system based on ultra-large-scale reconfigurable intelligent surface (RIS). We propose the secure location modulation scheme to synthesize the near-field spatial-temporal coding pattern of RIS with extremely low complexity. It ensures that only legitimate user can receive the raw constellations, while potential eavesdroppers at other ranges or angles can only receive the obfuscated constellations. NF-SecRIS operates without requiring synchronization with either transmitter or receiver. We implement a prototype of NF-SecRIS and conduct comprehensive experiments with multiple modulation schemes. The results show that the bit error rate (BER) of legitimate user is below 10^{-4}, while eavesdroppers at other ranges or angles suffer from BER exceeding 40%. It validates the implementation of 2D PLS in near-field communications.
format Preprint
id arxiv_https___arxiv_org_abs_2511_02949
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle NF-SecRIS: RIS-Assisted Near-Field Physical Layer Security via Secure Location Modulation
Wang, Zhendong
Meng, Chenyang
Yang, Jun
Wang, Jiayuan
Li, Yin
Jiang, Linshan
Zhang, Jin
Emerging Technologies
The 6G wireless networks impose extremely high requirements on physical layer secure communication. However, the existing solutions usually can only achieve one-dimensional physical layer security (PLS) in the angle dimension, and cannot achieve PLS in the range dimension. In this paper, we propose the NF-SecRIS system, the first range-angle-dependent (2D) PLS near-field communication system based on ultra-large-scale reconfigurable intelligent surface (RIS). We propose the secure location modulation scheme to synthesize the near-field spatial-temporal coding pattern of RIS with extremely low complexity. It ensures that only legitimate user can receive the raw constellations, while potential eavesdroppers at other ranges or angles can only receive the obfuscated constellations. NF-SecRIS operates without requiring synchronization with either transmitter or receiver. We implement a prototype of NF-SecRIS and conduct comprehensive experiments with multiple modulation schemes. The results show that the bit error rate (BER) of legitimate user is below 10^{-4}, while eavesdroppers at other ranges or angles suffer from BER exceeding 40%. It validates the implementation of 2D PLS in near-field communications.
title NF-SecRIS: RIS-Assisted Near-Field Physical Layer Security via Secure Location Modulation
topic Emerging Technologies
url https://arxiv.org/abs/2511.02949