Jamming-Resistant AAV Communications: A Multichannel-Aided Approach

Fuente: arXiv
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Auteurs principaux: Wang, Bin, Fang, Jun, Du, Jieru, Shao, Shihai
Format: Preprint
Publié: 2025
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author Wang, Bin
Fang, Jun
Du, Jieru
Shao, Shihai
author_facet Wang, Bin
Fang, Jun
Du, Jieru
Shao, Shihai
contents Jamming cancellation is essential to reliable unmanned autonomous vehicle (AAV) communications in the presence of malicious jammers. In this paper, we develop a practical multichannel-aided jamming cancellation method to realize secure AAV communications. The proposed method is capable of simultaneously achieving timing/frequency synchronization as well as jamming cancellation. More importantly, our method does not need the signal's/jammer's channel state information. It only utilizes the knowledge of the legitimate sender's preamble sequence that is available in existing communication protocols. We also analyze the length of the preamble sequence required for successful synchronization and signal recovery. Experimental results on the built hardware platform show that, with a two-antenna receiver, the proposed method can successfully decode the signal of interest even when the jamming signal is $40$dB stronger than the communication signal.
format Preprint
id arxiv_https___arxiv_org_abs_2507_14945
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Jamming-Resistant AAV Communications: A Multichannel-Aided Approach
Wang, Bin
Fang, Jun
Du, Jieru
Shao, Shihai
Signal Processing
Jamming cancellation is essential to reliable unmanned autonomous vehicle (AAV) communications in the presence of malicious jammers. In this paper, we develop a practical multichannel-aided jamming cancellation method to realize secure AAV communications. The proposed method is capable of simultaneously achieving timing/frequency synchronization as well as jamming cancellation. More importantly, our method does not need the signal's/jammer's channel state information. It only utilizes the knowledge of the legitimate sender's preamble sequence that is available in existing communication protocols. We also analyze the length of the preamble sequence required for successful synchronization and signal recovery. Experimental results on the built hardware platform show that, with a two-antenna receiver, the proposed method can successfully decode the signal of interest even when the jamming signal is $40$dB stronger than the communication signal.
title Jamming-Resistant AAV Communications: A Multichannel-Aided Approach
topic Signal Processing
url https://arxiv.org/abs/2507.14945