A Communication Model in Multilevel Security Network Using Quantum Key

被引:0
|
作者
Liu, Dong [1 ]
Zhang, Li [1 ]
Fu, Yunsheng [1 ]
Zhang, Chunrui [1 ]
Yin, Mingyong [1 ]
Liu, Yuan [1 ]
机构
[1] China Acad Engn Phys, Inst Comp Applicat, Mianyang, Peoples R China
关键词
quantum key distribution; security communication; multilevel security network; IPSec;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The integrity and confidentiality of the multilevel security communication are guaranteed by using the key obtained from key negotiation process. To ensure the safety of this process is very important. The quantum key distribution process is unconditionally secure. This paper uses this process to distribute the authentication keys and the session keys, which are used in IPSec process. Thus, the method to realize multilevel secure communication by using quantum key and IPSec is given. It adds a field to implement the control strategy based on the security of the packet, uses a key effective time to meet the different security requirements, and uses the "one-time-pad" algorithm to provide unconditional security. After the rules of using keys are given, the process of transmitting data packets is described.
引用
收藏
页码:915 / 918
页数:4
相关论文
共 50 条
  • [21] Research on Key Management of Network Communication Protocols Based on IoT Security
    Yao, Hongbo
    Yang, Li
    International Journal of Network Security, 2023, 25 (05) : 808 - 813
  • [22] The key to network security
    Heslop, M
    COMMUNICATIONS NEWS, 2005, 42 (09): : 24 - 25
  • [23] AN EVALUATION MODEL OF THE OPTICAL QUANTUM COMMUNICATION NETWORK
    Wen, Hao
    Wang, Yunlu
    2009 IEEE YOUTH CONFERENCE ON INFORMATION, COMPUTING AND TELECOMMUNICATION, PROCEEDINGS, 2009, : 50 - +
  • [24] Quantum key distribution with unconditional security for all optical fiber network
    Hirota, O
    Kato, K
    Shoma, M
    Usuda, TS
    QUANTUM COMMUNICATIONS AND QUANTUM IMAGING, 2004, 5161 : 320 - 331
  • [25] New decoy state quantum key distribution for increasing the security communication distance
    Liu D.
    Pei C.-X.
    Quan D.-X.
    Han B.-B.
    Zhao N.
    Xi'an Dianzi Keji Daxue Xuebao/Journal of Xidian University, 2010, 37 (01): : 13 - 17
  • [26] Composable security for practical quantum key distribution with two way classical communication
    Jiang, Cong
    Hu, Xiao-Long
    Yu, Zong-Wen
    Wang, Xiang-Bin
    NEW JOURNAL OF PHYSICS, 2021, 23 (06)
  • [27] A Review of Quantum Key Distribution Protocols in the Perspective of Smart Grid Communication Security
    Kong, Peng-Yong
    IEEE SYSTEMS JOURNAL, 2022, 16 (01): : 41 - 54
  • [28] New key management systems for multilevel security
    Kim, H
    Park, B
    Ha, JC
    Lee, B
    Park, D
    COMPUTATIONAL SCIENCE AND ITS APPLICATIONS - ICCSA 2005, PT 2, 2005, 3481 : 245 - 253
  • [29] Key management for multilevel security in distributed applications
    Qing, S.H.
    Meng, Y.
    Liu, K.L.
    Tien Tzu Hsueh Pao/Acta Electronica Sinica, 2001, 29 (02): : 269 - 271
  • [30] Security of Quantum Key Distribution
    Beaudry, Normand
    Ferenczi, Agnes
    Narasimhachar, Varun
    Moroder, Tobias
    Ma, Xiongfeng
    Piani, Marco
    Luekenhaus, Norbert
    2010 CONFERENCE ON OPTICAL FIBER COMMUNICATION OFC COLLOCATED NATIONAL FIBER OPTIC ENGINEERS CONFERENCE OFC-NFOEC, 2010,