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On the Cooperative LO Leakage Detection with Power Supply Control for Hidden Eavesdroppers

  • Jie An
  • , Jiting Shi
  • , Qinyun Liang
  • , Lexi Xu
  • , Qianyun Zhang*
  • *此作品的通讯作者
  • Beihang University
  • Defence Industry Secrecy Examination and Certification Center
  • China Unicom (Hong Kong) Ltd.

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Detecting local oscillator (LO) leakage for hidden radio frequency (RF) devices is now the primary approach to countermeasure eavesdropping threats in wireless security. However, due to the low power and fast decay of LO leakage, the detection range and robustness of this approach are still limited. To overcome the above difficulties and improve the detection performance, this study presents a cooperative detection scheme for LO leakage utilizing multiple receivers simultaneously. Based on the defined power supply signal waveform for the device under test (DUT), the determination quantity for LO leakage in the spectrum is derived, and the detection performance indicators are derived based on the statistical analysis and assumed signal model. Considering the received signal quantity difference in multiple receivers, a simple yet robust performance optimization procedure is proposed to select a minimum number of receivers for best performance. Extensive numerical experiments are carried out to validate the correctness of the proposed methods and demonstrate the performance enhancement in LO leakage.

源语言英语
主期刊名Proceedings of 2024 4th International Conference on Signal Processing and Communication Technology, SPCT 2024
出版商Association for Computing Machinery, Inc
95-101
页数7
ISBN(电子版)9798400710636
DOI
出版状态已出版 - 24 2月 2025
活动4th International Conference on Signal Processing and Communication Technology, SPCT 2024 - Shenzhen, 中国
期限: 27 12月 202429 12月 2024

出版系列

姓名Proceedings of 2024 4th International Conference on Signal Processing and Communication Technology, SPCT 2024

会议

会议4th International Conference on Signal Processing and Communication Technology, SPCT 2024
国家/地区中国
Shenzhen
时期27/12/2429/12/24

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