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Volume 1, Issue 3
Chaos Synchronization of Willis Aneurysm Systems

J. Info. Comput. Sci. , 1 (2006), pp. 173-182.

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  • Abstract
In this paper an adaptive sliding mode controller is presented for a class of master-slave chaotic synchronization systems with uncertainties. The concept of extended systems is used such that continuous control input is obtained using a sliding mode design scheme. By comparing with the results in the existed literatures, the results show that the master-slave chaotic systems with uncertainties can be synchronized accurately by this controller. Illustrative examples of chaos synchronization for uncertain Willis system are presented to demonstrate the superiority of the obtained results.
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@Article{JICS-1-173, author = {}, title = {Chaos Synchronization of Willis Aneurysm Systems}, journal = {Journal of Information and Computing Science}, year = {2024}, volume = {1}, number = {3}, pages = {173--182}, abstract = { In this paper an adaptive sliding mode controller is presented for a class of master-slave chaotic synchronization systems with uncertainties. The concept of extended systems is used such that continuous control input is obtained using a sliding mode design scheme. By comparing with the results in the existed literatures, the results show that the master-slave chaotic systems with uncertainties can be synchronized accurately by this controller. Illustrative examples of chaos synchronization for uncertain Willis system are presented to demonstrate the superiority of the obtained results. }, issn = {1746-7659}, doi = {https://doi.org/}, url = {http://global-sci.org/intro/article_detail/jics/22842.html} }
TY - JOUR T1 - Chaos Synchronization of Willis Aneurysm Systems AU - JO - Journal of Information and Computing Science VL - 3 SP - 173 EP - 182 PY - 2024 DA - 2024/01 SN - 1 DO - http://doi.org/ UR - https://global-sci.org/intro/article_detail/jics/22842.html KW - Willis Systems, Chaos, Sliding Control, Synchronization. AB - In this paper an adaptive sliding mode controller is presented for a class of master-slave chaotic synchronization systems with uncertainties. The concept of extended systems is used such that continuous control input is obtained using a sliding mode design scheme. By comparing with the results in the existed literatures, the results show that the master-slave chaotic systems with uncertainties can be synchronized accurately by this controller. Illustrative examples of chaos synchronization for uncertain Willis system are presented to demonstrate the superiority of the obtained results.
. (2024). Chaos Synchronization of Willis Aneurysm Systems. Journal of Information and Computing Science. 1 (3). 173-182. doi:
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