Title :
Generalized Synchronization Theorem for Non-Autonomous Differential Equation with Application in Encryption Scheme
Author :
Liu, Ting ; Ji, Ye ; Min, Lequan ; Zhao, Geng ; Qin, Xiaohong
Abstract :
This paper introduces a constructive theorem for design- ing a non-autonomous driven system, which can achieve generalized chaos synchronization (GCS) to a driving sys- tem. As a first application, a encryption scheme is established based on GCS non-autonomous systems. This scheme has the functions of the datum authentication and one-time-pad. As a second application, the non-autonomous Driven van der Pol oscillator is selected as a driving system. A invertible transform H is introduced to design a driven sys- tem such that the two systems are in GS with respect to H. Based on the GCS systems and the scheme one can en- crypt and decrypt original information without any loss. The analysis of the key space and sensitivity of key param- eters show that this scheme has sound security. The key space of the scheme is larger that 2148. It can be expected that our theorem provides a new tool for studying and understanding the GS phenomena and the scheme offers a new method for information encryption.
Keywords :
Application software; Authentication; Chaotic communication; Computational intelligence; Computer security; Cryptography; Design engineering; Differential equations; Information security; Oscillators;
Conference_Titel :
Computational Intelligence and Security, 2007 International Conference on
Conference_Location :
Harbin, China
Print_ISBN :
0-7695-3072-9
Electronic_ISBN :
978-0-7695-3072-7
DOI :
10.1109/CIS.2007.170