Associated observer-based synchronization for uncertain chaotic systems subject to channel noise and chaos-based secure communication
This paper attempts to discuss the issues of chaotic synchronization and chaos-based secure communication for uncertain chaotic systems subject to channel noise. An augmented drive system used to deal with channel noise is constructed by introducing a new auxiliary drive variable. Then, an augmented...
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Published in | Neurocomputing (Amsterdam) Vol. 167; pp. 587 - 595 |
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Format | Journal Article |
Language | English |
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01.11.2015
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Abstract | This paper attempts to discuss the issues of chaotic synchronization and chaos-based secure communication for uncertain chaotic systems subject to channel noise. An augmented drive system used to deal with channel noise is constructed by introducing a new auxiliary drive variable. Then, an augmented auxiliary drive signal is constructed in order to breakthrough the observer rank condition. Based on a kind of nonsingular transformation for the state and output of augmented auxiliary drive system, a reduced-order observer is designed to asymptotically estimate the states of the augmented auxiliary drive system, and a high-gain sliding-mode observer is considered to estimate the augmented auxiliary drive signal and its derivative. An information signal recovery method that can not only recover the information signal but also reconstruct both uncertain parameter disturbance and channel noise is developed. Finally, a numerical simulation example is given to evaluate the performance of the proposed scheme. |
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AbstractList | This paper attempts to discuss the issues of chaotic synchronization and chaos-based secure communication for uncertain chaotic systems subject to channel noise. An augmented drive system used to deal with channel noise is constructed by introducing a new auxiliary drive variable. Then, an augmented auxiliary drive signal is constructed in order to breakthrough the observer rank condition. Based on a kind of nonsingular transformation for the state and output of augmented auxiliary drive system, a reduced-order observer is designed to asymptotically estimate the states of the augmented auxiliary drive system, and a high-gain sliding-mode observer is considered to estimate the augmented auxiliary drive signal and its derivative. An information signal recovery method that can not only recover the information signal but also reconstruct both uncertain parameter disturbance and channel noise is developed. Finally, a numerical simulation example is given to evaluate the performance of the proposed scheme. |
Author | Chen, Yantao Yang, Junqi Zhu, Fanglai |
Author_xml | – sequence: 1 givenname: Junqi surname: Yang fullname: Yang, Junqi email: yjq@hpu.edu.cn organization: College of Electrical Engineering and Automation, Henan Polytechnic University, Jiaozuo 454000, PR China – sequence: 2 givenname: Yantao surname: Chen fullname: Chen, Yantao organization: College of Electrical Engineering and Automation, Henan Polytechnic University, Jiaozuo 454000, PR China – sequence: 3 givenname: Fanglai surname: Zhu fullname: Zhu, Fanglai organization: College of Electronics and Information Engineering, Tongji University, Shanghai 201804, PR China |
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SubjectTerms | Channel noise Chaos-based secure communication Chaotic synchronization High-gain sliding-mode observer |
Title | Associated observer-based synchronization for uncertain chaotic systems subject to channel noise and chaos-based secure communication |
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