基于多节点的合作干扰检测,用于 ISAC 中的反应式从属干扰

IF 0.7 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Electronics Letters Pub Date : 2024-09-25 DOI:10.1049/ell2.70009
Cheng Li, Yuxin Shi, Xinjin Lu, Junjie Wang, Yonggang Zhu, Ming Xiao
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引用次数: 0

摘要

精确的干扰检测是综合传感与通信中高效抗干扰通信的前提和重要支撑。近年来,以干扰效率高、检测难度大为特点的被动跟随干扰被视为跳频扩频通信的主要对手,对无线通信的可靠性构成威胁。基于此背景,本文提出了一种基于多节点的协同干扰检测方案,用于精确检测反应式跟随者干扰。具体来说,二级节点在每个检测周期内将疑似被攻击符号的平均能量作为上行数据发送给主用户,然后由检测阈值提供检测结果。根据上行链路数据和信道条件,为主用户推导出最佳检测阈值。此外,还得出了最佳阈值下的理论检测概率,并分析了方案的复杂性。仿真结果表明,针对被动跟随者干扰提出的基于多节点的合作干扰检测方案能有效提高检测概率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Multiple-nodes based cooperative jamming detection for reactive follower jamming in ISAC

Accurate jamming detection is a prerequisite and important support for efficient anti-jamming communication in integrated sensing and communications. In recent years, the reactive follower jamming, characterized by the high jamming efficiency and the difficulty of detection, is seen as the main opponent for frequency hopping spread spectrum communication, which poses a threat to the reliability of wireless communication. Based on the background, a multiple-nodes based cooperative jamming detection scheme is proposed for accurately detecting the reactive follower jamming. Specifically, the secondary nodes send the average energy of the suspected attacked symbols to the primary user as the uplink data in each detection period, and then the detection result is provided by the detection threshold. The optimal detection threshold is derived for the primary user according to the uplink data and channel conditions. In addition, the theoretical probability of detection under the optimal threshold is derived, and the complexity of the scheme is analysed. Simulation results show that the proposed multiple-nodes based cooperative jamming detection scheme for reactive follower jamming can effectively improve the probability of detection.

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来源期刊
Electronics Letters
Electronics Letters 工程技术-工程:电子与电气
CiteScore
2.70
自引率
0.00%
发文量
268
审稿时长
3.6 months
期刊介绍: Electronics Letters is an internationally renowned peer-reviewed rapid-communication journal that publishes short original research papers every two weeks. Its broad and interdisciplinary scope covers the latest developments in all electronic engineering related fields including communication, biomedical, optical and device technologies. Electronics Letters also provides further insight into some of the latest developments through special features and interviews. Scope As a journal at the forefront of its field, Electronics Letters publishes papers covering all themes of electronic and electrical engineering. The major themes of the journal are listed below. Antennas and Propagation Biomedical and Bioinspired Technologies, Signal Processing and Applications Control Engineering Electromagnetism: Theory, Materials and Devices Electronic Circuits and Systems Image, Video and Vision Processing and Applications Information, Computing and Communications Instrumentation and Measurement Microwave Technology Optical Communications Photonics and Opto-Electronics Power Electronics, Energy and Sustainability Radar, Sonar and Navigation Semiconductor Technology Signal Processing MIMO
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