Differential Physical Layer Secret Key Generation Based On Weighted Exponential Moving Average

被引:0
|
作者
Chen, Mingqi [1 ]
Jiang, Ting [1 ]
Zou, Weixia [1 ]
机构
[1] Beijing Univ Posts & Telecommun, Minist Educ, Key Lab Universal Wireless Commun, Beijing, Peoples R China
关键词
physical layer security; weighted exponential moving average; differential quantization;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Traditional wireless security schemes neglect the unique properties of the wireless channel. Exploiting physical layer can significantly enhance the conventional security schemes. However, the robustness and bit mismatch rate of current physical-layer-based schemes still need to be improved. Conventional two thresholds quantization is not stable when inserting or removing intermediate objects between legitimate users, and the consistency of the generated secret key is low due to small fluctuations. In this article, we propose a differential secret key generation scheme based on weighted exponential moving average (WEMA) method. Differential quantization is utilized to enhance the robustness of the secret key generation scheme. Furthermore, we prove that WEMA method can effectively smooth out short-term fluctuations and decreasing the bit mismatch rate. Finally, we present a numerical simulation to demonstrate the feasibility of our proposal.
引用
收藏
页数:4
相关论文
共 50 条
  • [1] Secret Key Generation Schemes for Physical Layer Security
    Kumar, Megha S.
    Ramanathan, R.
    Jayakumar, M.
    Yadav, Devendra Kumar
    DEFENCE SCIENCE JOURNAL, 2021, 71 (04) : 545 - 555
  • [2] New Dimensions for Physical Layer Secret Key Generation: Excursion Lengths-Based Key Generation
    Adil, Muhammad
    Ullah Khan, Habib
    Arif, Mohammad
    Shah Nawaz, Mian
    Khan, Faheem
    IEEE ACCESS, 2024, 12 : 82972 - 82983
  • [3] Physical Layer Secret Key Capacity of Two Moving Terminals
    Wang, Xu
    Li, Mingliang
    Jin, Liang
    Huang, Kaizhi
    2017 IEEE 85TH VEHICULAR TECHNOLOGY CONFERENCE (VTC SPRING), 2017,
  • [4] Physical Layer Secret Key Generation in Static Environments
    Aldaghri, Nasser
    Mahdavifar, Hessam
    IEEE TRANSACTIONS ON INFORMATION FORENSICS AND SECURITY, 2020, 15 : 2692 - 2705
  • [5] Physical Layer Secret Key Generation Based on Autoencoder for Weakly Correlated Channels
    Han, Jingyuan
    Zeng, Xin
    Xue, Xiaoping
    Ma, Jingxiao
    2020 IEEE/CIC INTERNATIONAL CONFERENCE ON COMMUNICATIONS IN CHINA (ICCC), 2020, : 1220 - 1225
  • [6] Physical Layer Secret Key Generation Scheme Based on Signal Propagation Characteristics
    Hu X.-Y.
    Jin L.
    Huang K.-Z.
    Zhong Z.
    Zhang S.-J.
    Tien Tzu Hsueh Pao/Acta Electronica Sinica, 2019, 47 (02): : 483 - 488
  • [7] Scramble-Based Secret Key Generation Algorithm in Physical Layer Security
    Wang, Dan
    Chen, Feng
    Chen, Yongtai
    Zheng, Mingjie
    Zheng, Jingui
    MOBILE INFORMATION SYSTEMS, 2022, 2022
  • [8] Physical-Layer Secret Key Generation with Untrusted Relays
    Chan Dai Truyen Thai
    Lee, Jemin
    Cheng, Chi
    Quek, Tony Q. S.
    2014 GLOBECOM WORKSHOPS (GC WKSHPS), 2014, : 1385 - 1390
  • [9] Evaluation of Physical Layer Secret Key Generation for IoT Devices
    Jacovic, Marko
    Kraus, Martin
    Mainland, Geoffrey
    Dandekar, Kapil R.
    2019 IEEE 20TH WIRELESS AND MICROWAVE TECHNOLOGY CONFERENCE (WAMICON), 2019,
  • [10] Is Adversarial RIS Harmful to Physical Layer Secret Key Generation
    Fang, Yi
    Wu, Huici
    Wei, Zhiqing
    Tao, Xiaofeng
    IEEE CONFERENCE ON GLOBAL COMMUNICATIONS, GLOBECOM, 2023, : 7225 - 7230