Title :
Higher dimensional chaos for Audio encryption
Author :
Ganesh Babu, S. ; Ilango, P.
Author_Institution :
Robert Bosch Eng. & Bus. Solutions Ltd., Coimbatore, India
Abstract :
In recent years, a large number of discrete chaotic cryptographic algorithms have been proposed. The chaotic based cryptograms are suitable for large-scale data encryption such as images, videos or audio data. This paper propose a novel higher dimensional chaotic system for audio encryption, in which variables are treated as encryption keys in order to achieve secure transmission of audio signals. Since the highly sensitive to the initial condition of a system and to the variation of a parameter, and chaotic trajectory is so unpredictable. As a result we obtain much higher security. The higher dimensional of the algorithm is used to enhance the key space and security of the algorithm. The security analysis of the algorithm is given. The experiments show that the algorithm has the characteristic of sensitive to initial condition, high key space; pixel distribution uniformity and the algorithm will not break in chosen/known-plaintext attacks.
Keywords :
audio signal processing; chaos; cryptography; algorithm security analysis; audio encryption; audio signal transmission security; chaotic trajectory; chaotic-based cryptograms; chosen-known-plaintext attacks; discrete chaotic cryptographic algorithm; higher-dimensional chaos; key space; large-scale data encryption; pixel distribution uniformity; Computational intelligence; Computer security; Decision support systems; Audio encryption; Higher dimensional chaos; Media files Encryption;
Conference_Titel :
Computational Intelligence in Cyber Security (CICS), 2013 IEEE Symposium on
Conference_Location :
Singapore
DOI :
10.1109/CICYBS.2013.6597206