A One-Time Pad Encryption Scheme Based on Efficient Physical-Layer Secret Key Generation for Intelligent IoT System

被引:0
|
作者
Liquan Chen [1 ,2 ]
Kailin Cao [1 ]
Tianyu Lu [1 ]
Yi Lu [1 ]
Aiqun Hu [2 ,3 ]
机构
[1] School of Cyber Science and Engineering, Southeast University
[2] Purple Mountain Laboratories
[3] National Mobile Communications Research Laboratory, Southeast University
关键词
D O I
暂无
中图分类号
TN929.5 [移动通信]; TP391.44 []; TN918.4 [密码的加密与解密];
学科分类号
080402 ; 080904 ; 0810 ; 081001 ; 0811 ; 081101 ; 081104 ; 0839 ; 1402 ; 1405 ;
摘要
The one-time pad(OTP) is an applicationlayer encryption technique to achieve the informationtheoretic security, and the physical-layer secret key generation(SKG) technique is a promising candidate to provide the random keys for OTP. In this paper, we propose a joint SKG and OTP encryption scheme with the aid of a reconfigurable intelligent surface(RIS) to boost secret key rate. To maximize the efficiency of secure communication, we divide the process of secure transmission into two stages: SKG and then encrypted packet transmission. Meanwhile, we design an optimal algorithm for allocating time slots for SKG to maximize SKG efficiency without security risk. Furthermore, we design a key updating protocol based on our SKG scheme for OTP encryption. Simulation results verify that our scheme can generate keys securely and efficiently, and significantly improve the secure communication performance in an intelligent IoT system.
引用
收藏
页码:185 / 196
页数:12
相关论文
共 50 条
  • [31] 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
  • [32] Time-Varying Underwater Acoustic Channel Based Physical Layer Secret Key Generation Scheme
    Xu M.
    Fan Y.
    Jiang C.
    Jisuanji Yanjiu yu Fazhan/Computer Research and Development, 2019, 56 (12): : 2660 - 2670
  • [33] Physical-Layer Secret Key Generation Based on Bidirectional Convergence Feature Learning Convolutional Network
    Chen, Yanru
    Luo, Zhiyuan
    Wang, Zhiyuan
    Sun, Limin
    Li, Yang
    Xing, Bin
    Chen, Liangyin
    Guo, Bing
    IEEE INTERNET OF THINGS JOURNAL, 2023, 10 (16) : 14846 - 14855
  • [34] High speed quantum key distribution system supports one-time pad encryption of real-time video
    Mink, Alan
    Tang, Xiao
    Ma, LiJun
    Nakassis, Tassos
    Hershman, Barry
    Bienfang, Joshua C.
    Su, David
    Boisvert, Ron
    Clark, Charles W.
    Williams, Carl J.
    QUANTUM INFORMATION AND COMPUTATION IV, 2006, 6244
  • [35] On Channel Transforms to Enhance Reciprocity and Quantization in Physical-Layer Secret Key Generation
    Hussain, Ghalib
    Junaid Nawaz, Syed
    Wyne, Shurjeel
    Patwary, Mohammad N.
    IEEE ACCESS, 2025, 13 : 256 - 272
  • [36] An Efficient Information Reconciliation Scheme via Partial Encoding for Physical Layer Secret Key Generation
    Matsumine, Toshiki
    Ochiai, Hideki
    Shikata, Junji
    IEEE COMMUNICATIONS LETTERS, 2024, 28 (06) : 1263 - 1267
  • [37] Efficient secret key generation scheme of physical layer security communication in ubiquitous wireless networks
    Xiong, Hailiang
    Wang, Guangyuan
    Ding, Jian
    Zhu, Weihong
    Xu, Hongji
    Hu, Changwu
    Mai, Zhenzhen
    Bian, Ruochen
    IET COMMUNICATIONS, 2021, 15 (08) : 1123 - 1132
  • [38] A randomized CPA-secure asymmetric-key chaotic color image encryption scheme based on the Chebyshev mappings and one-time pad
    Shakiba, Ali
    JOURNAL OF KING SAUD UNIVERSITY-COMPUTER AND INFORMATION SCIENCES, 2021, 33 (05) : 562 - 571
  • [39] Encrypting Wireless Communications on the Fly Using One-Time Pad and Key Generation
    Li, Guyue
    Zhang, Zheying
    Zhang, Junqing
    Hu, Aiqun
    IEEE INTERNET OF THINGS JOURNAL, 2021, 8 (01) : 357 - 369
  • [40] A one-time one-key encryption algorithm based on the ergodicity of chaos
    王兴元
    腾琳
    Chinese Physics B, 2012, (02) : 160 - 164