DocumentCode :
674756
Title :
Optical security system employing shifted phase-encoded joint transform correlation and orthogonal code
Author :
Islam, Md Nurul ; Shahrabi, Kamal
Author_Institution :
Security Syst., Farmingdale State Coll., Farmingdale, NY, USA
fYear :
2013
fDate :
21-22 Oct. 2013
Firstpage :
1
Lastpage :
4
Abstract :
Efficient cryptographic techniques are very much crucial in protecting confidential information, including personal identification and biometrics. Reliable encryption algorithm must restrict any and all unauthorized access to information or information system. At the same time, the algorithm should reproduce the information to its authorized users without any loss of distortion. Optics has played an important role in devising fast and reliable security systems without requiring complex architecture. Though several optical security techniques have so far been proposed in the literature, but they are not as successful in providing with robust performance and strong security against unauthorized access. This paper proposes an efficient optical security system utilizing a joint transform correlation (JTC) technique and orthogonal encoding scheme. Multiple information in the form of images are encoded using orthogonal codes and then mixed together. The single encoded image is fed to the JTC scheme, where the input image is nonlinearly encrypted by the key using Fourier lenses. The proposed technique also includes a fringe-adjusted filter to eliminate noisy signals and hence to enhance the decryption performance. Computer simulation investigation verifies that the scheme can secure the confidential information from any threats.
Keywords :
cryptography; image processing; orthogonal codes; Fourier lense; JTC technique; biometrics; cryptographic technique; decryption performance; encryption algorithm; fringe-adjusted filter; image encryption; optical security system; orthogonal code; orthogonal encoding scheme; personal identification; shifted phase-encoded joint transform correlation; Encryption; Optical distortion; Optical filters; Optical imaging; Optical polarization; Fourier lens; fringe adjusted filter; joint transform correlation; orthogonal code;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Emerging Technologies for a Smarter World (CEWIT), 2013 10th International Conference and Expo on
Conference_Location :
Melville, NY
Type :
conf
DOI :
10.1109/CEWIT.2013.6713756
Filename :
6713756
Link To Document :
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