IC-QKD: An Information-Centric Quantum Key Distribution Network

被引:1
作者
Zhang, Qiaolun [1 ]
Ayoub, Omran [2 ]
Wu, Jun [3 ]
Lin, Xi [4 ,5 ]
Tornatore, Massimo [1 ]
机构
[1] Politecn Milan, Milan, Italy
[2] Univ Appl Sci Southern Switzerland, Manno, Switzerland
[3] Waseda Univ, Tokyo, Japan
[4] Shanghai Jiao Tong Univ, Shanghai, Peoples R China
[5] Shanghai Key Lab Integrated Adm Technol Informat, Shanghai, Peoples R China
基金
中国国家自然科学基金;
关键词
Optical fiber networks; Entertainment industry; Protocols; Next generation networking; Ecosystems; Servers; Quantum key distribution;
D O I
10.1109/MCOM.004.2200763
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
Current and next-generation networks are threatened by emerging attacks from quantum computers. To protect these services against quantum threat, quantum key distribution (QKD) using optical networks is being investigated and tested as a safe countermeasure to provide information-theoretic security. Although recent studies confirm the feasibility of QKD over optical networks, two main technical challenges, among others, remain unaddressed: the limited rate of generating keys requires efficient key distribution to secure the numerous applications, and as key requests from applications can be characterized by different importance, QKD networks need a key distribution platform that accounts for such diversity. To address these challenges, we propose to incorporate the paradigm of Information-Centric Networking (ICN) within the QKD process, and we describe a novel information-centric quantum key distribution (IC-QKD) network for efficient and differentiated key distribution. We first design a semantic-based key distribution scheme, which leverages ICN to incorporate the knowledge of application importance in QKD and to enhance the resource efficiency of QKD by decoupling the sender from its receiver. We then propose an in-network key-caching scheme, which is especially advantageous for multi-cast applications, as keys can be cached and reused for multiple users of a multicast group to accelerate key distribution. Finally, we design a semantic-based application analysis for semantic-based key caching and distribution, which serves various applications with different priorities. Simulation results show that the proposed QKD network can reach up to about 16 percent increase in the capability of serving key requests with respect to the existing QKD network.
引用
收藏
页码:148 / 154
页数:7
相关论文
共 15 条
[1]   PrivICN: Privacy-preserving content retrieval in information-centric networking [J].
Bernardini, Cesar ;
Marchal, Samuel ;
Asghar, Muhammad Rizwan ;
Crispo, Bruno .
COMPUTER NETWORKS, 2019, 149 :13-28
[2]   The Evolution of Quantum Key Distribution Networks: On the Road to the Qinternet [J].
Cao, Yuan ;
Zhao, Yongli ;
Wang, Qin ;
Zhang, Jie ;
Ng, Soon Xin ;
Hanzo, Lajos .
IEEE COMMUNICATIONS SURVEYS AND TUTORIALS, 2022, 24 (02) :839-894
[3]  
Chen L., 2016, REPORT POSTQUANTUM C, VVolume 12
[4]   An integrated space-to-ground quantum communication network over 4,600 kilometres [J].
Chen, Yu-Ao ;
Zhang, Qiang ;
Chen, Teng-Yun ;
Cai, Wen-Qi ;
Liao, Sheng-Kai ;
Zhang, Jun ;
Chen, Kai ;
Yin, Juan ;
Ren, Ji-Gang ;
Chen, Zhu ;
Han, Sheng-Long ;
Yu, Qing ;
Liang, Ken ;
Zhou, Fei ;
Yuan, Xiao ;
Zhao, Mei-Sheng ;
Wang, Tian-Yin ;
Jiang, Xiao ;
Zhang, Liang ;
Liu, Wei-Yue ;
Li, Yang ;
Shen, Qi ;
Cao, Yuan ;
Lu, Chao-Yang ;
Shu, Rong ;
Wang, Jian-Yu ;
Li, Li ;
Liu, Nai-Le ;
Xu, Feihu ;
Wang, Xiang-Bin ;
Peng, Cheng-Zhi ;
Pan, Jian-Wei .
NATURE, 2021, 589 (7841) :214-+
[5]   Phase-field model of precipitation processes with coherency loss [J].
Cheng, Tian-Le ;
Wen, You-Hai .
NPJ COMPUTATIONAL MATERIALS, 2021, 7 (01)
[6]  
Gatto A., 2021, Photonics in Switching and Computing
[7]  
Huttner B, 2022, NPJ QUANTUM INFORM, V8, DOI 10.1038/s41534-022-00613-4
[8]   QKDN meets ICN: Efficient Secure In-Network Data Acquisition [J].
Matsuzono, Kazuhisa ;
Miyazawa, Takaya ;
Asaeda, Hitoshi .
2021 IEEE GLOBAL COMMUNICATIONS CONFERENCE (GLOBECOM), 2021,
[9]   Quantum-Key-Distribution (QKD) Networks Enabled by Software-Defined Networks (SDN) [J].
Wang, Hua ;
Zhao, Yongli ;
Nag, Avishek .
APPLIED SCIENCES-BASEL, 2019, 9 (10)
[10]   Twin-field quantum key distribution over 830-km fibre [J].
Wang, Shuang ;
Yin, Zhen-Qiang ;
He, De-Yong ;
Chen, Wei ;
Wang, Rui-Qiang ;
Ye, Peng ;
Zhou, Yao ;
Fan-Yuan, Guan-Jie ;
Wang, Fang-Xiang ;
Chen, Wei ;
Zhu, Yong-Gang ;
Morozov, Pavel, V ;
Divochiy, Alexander, V ;
Zhou, Zheng ;
Guo, Guang-Can ;
Han, Zheng-Fu .
NATURE PHOTONICS, 2022, 16 (02) :154-+