Overview of the key technology of photonic firewall at high speed

被引:0
|
作者
Huang S. [1 ]
Li X. [1 ]
Tang Y. [1 ]
Guo J. [1 ]
机构
[1] State Key Laboratory of Information Photonics and Optical Communication, Beijing University of Posts and Telecommunications, Beijing
来源
基金
中国国家自然科学基金;
关键词
Highly nonlinear fiber; Pattern matching; Photonic firewall; Semiconductor optical amplifier;
D O I
10.11959/j.issn.1000-436x.2019212
中图分类号
学科分类号
摘要
In order to maintain the security of optical network, it is urgent to research and deploy photonic firewall which can effectively process high-speed optical signals to replace existing electronic firewall which consumes high energy. After a brief review of the principle of photonic firewall, the pattern matching technology based on correlation operation and all-optical logic gates were summarized, and the matching systems was compared according to their advantages and disadvantages. Besides, the realization methods of all-optical logic gates were introduced. Finally, the next research direction and development trend of all-optical pattern matching were prospected: more efficient system structure or non-linear devices with faster response speed. The survey shows that photonic firewall based on all-optical pattern matching has a good application prospect in network security. © 2019, Editorial Board of Journal on Communications. All right reserved.
引用
收藏
页码:157 / 167
页数:10
相关论文
共 57 条
  • [1] Gu W.Y., Optical Fiber Communications, (2011)
  • [2] Krishnan S., Borude A., Security issues in all-optical networks, 2011 Annual SRII Global Conference, pp. 790-794, (2011)
  • [3] Shaneman K., Gray S., Optical network security: technical analysis of fiber tapping mechanisms and methods for detection & prevention, Military Communications Conference (MILCOM), 2, pp. 711-716, (2004)
  • [4] Pan Q., Xie D.H., Cheng X.J., Et al., An optical network attack approach based on signal delay, Electronic Design Engineering, 20, 4, pp. 125-129, (2012)
  • [5] Luo Q.S., Yang H., Liu Z.Q., Et al., Security status and key technologies study of optical network, Journal of CAEIT, 8, 4, pp. 338-343, (2013)
  • [6] Cobb S., Establishing firewall policy, Southcon/96 Conference Record, pp. 198-205, (1996)
  • [7] Krit S., Haimoud E., Overview of firewalls: types and policies: managing windows embedded firewall programmatically, 2017 International Conference on Engineering & MIS, pp. 1-7, (2017)
  • [8] Wu C., Yang X.L., Weng Q.W., Et al., Simulation on high-speed all-optical pattern recognition using SOA-MZIs, 17th Opto- Electronics and Communications Conference, pp. 821-822, (2012)
  • [9] Sliti M., Hamdi M., Boudriga N., A novel optical firewall architecture for burst switched networks, 12th International Conference on Transparent Optical Networks, pp. 1-5, (2010)
  • [10] Webb R.P., Dailey J.M., Manning R.J., Et al., All-optical header processing in a 42.6 Gb/s optoelectronic firewall, IEEE Journal of Selected Topics in Quantum Electronics, 18, 2, pp. 757-764, (2012)