Novel encryption technique for security enhancement in optical code division multiple access

被引:0
作者
Urmila Bhanja
Sutikshna Singhdeo
机构
[1] IGIT,Department of ETC
[2] Sarang,undefined
[3] IISER,undefined
来源
Photonic Network Communications | 2020年 / 39卷
关键词
Eavesdropper; Encryption; Multiple access interference (MAI); Two-dimensional wavelength/time (2D ; /; ) code; Multi-diagonal prime hopping code (MDPHC);
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, a novel two dimensional (2D) wavelength/time (W/T) optical code division multiple access (OCDMA) code with zero cross-correlation property to minimize multiple access interface (MAI) is addressed. The code is constructed using various features of two different one-dimensional codes, i.e., multi-diagonal code and prime hop code referred as multi-diagonal prime hopping (MDPHC) code. The proposed 2D W/T MDPHC code is generated using java software version 8.1, which is found to be optimal. In this paper, the code complexity of the proposed 2D code is also derived. In addition to the novel 2D code design, security provision at the photonic layer of the OCDMA network is also addressed by transmitting the data through a novel encrypted circuit in order to prevent attacks by an eavesdropper. In this work, the proposed encryption circuit is integrated with the proposed 2D (W/T) MDPHC OCDMA encoder to enhance the overall security performance. The proposed model is validated using optisystem software version 14. Robustness of the proposed technique against different types of attacks such as ciphertext-only attack, known plain text attack, chosen plaintext attack, energy detection attack in on off keying optical code division multiple access, Brute-force search attack is investigated theoretically. Bit error rate is also estimated for different fiber distances.
引用
收藏
页码:195 / 222
页数:27
相关论文
共 110 条
[1]  
Leiard DE(2005)Experimental investigation of security issues in OCDMA: a code switching scheme IET Electron. Lett. 41 817-819
[2]  
Jiang Z(2007)Asynchronous multiuser coherent OCDMA system with shift code keying and balanced detection IEEE J. Sel. Top. Quantum Electron. 13 1463-1470
[3]  
Wiener AM(2008)Experimental demonstration of security improved OCDMA scheme based on incoherent broadband light source and bipolar coding Opt. Fiber Technol. 14 130-133
[4]  
Wang X(2006)Coherent OCDMA System using DPSK data format with balanced detection IEEE Photonics Technol. Lett. 18 826-828
[5]  
Wada N(2010)Demonstration of differential detection on attacking code-shift-keying OCDMA systems IET Electron. Lett. 46 1680-1682
[6]  
Miyazaki T(2006)Experimental investigation of security issues in OCDMA IEEE J. Lightwave Technol. 24 4228-4234
[7]  
Cincotti G(2015)Optical code division multiple access secure communications systems with rapid configurable polarization shift key user code Opt. Eng. 54 1-7
[8]  
Kitayama K(2007)Spectral phase encoded time spread optical code division multiple access technology for next generation communication networks Opt. Eng. 6 1210-1227
[9]  
Chung HS(2006)A method for secure communications over a public fiber-optical network Opt. Express 14 3738-3751
[10]  
Chang S(2009)A compact and low-latency scheme for optical steganography using chirped fiber Bragg grating Electron. Lett. 45 179-180