Secure Communication Systems Using Distributed Parameter Chaotic Synchronization
Author:
Affiliation:
1. Graduate School of System Informatics, Kobe University
Publisher
The Society of Instrument and Control Engineers
Link
https://www.jstage.jst.go.jp/article/sicetr/57/2/57_78/_pdf
Reference13 articles.
1. 1) K.M. Cuomo and A.V. Oppenheim: Circuit implementation of synchronized chaos with applications to communications, Physical Review Letters, 71-1, 65/68 (1993)
2. 2) L. Kocarev and U. Parlitz: General approach for chaotic synchronization with applications to communication, Physical Review Letters, 74-25, 5028/5031 (1995)
3. 4) K. Yoshimura: Multichannel digital communications by the synchronization of globally coupled chaotic systems, Physical Review E, 60-2, 1648/1657 (1999)
4. 5) G. Chen, S.B. Hsu and J. Zhou: Chaotic vibrations of the one-dimensional wave equation due to a self-excitation boundary condition, Part I: Controlled hysteresis, Trans. Am. Math. Soc., 350-11, 4265/4311 (1998)
5. 6) G. Chen, S.B. Hsu and J. Zhou: Chaotic vibration of the wave equation with nonlinear feedback boundary control: progress and open questions, G.R. Chen and X. Yu (Eds.), Chaos Control: Theory and Applications, LNCIS 292, Springer-Verlag, 25/50 (2003)
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