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ID 118840
著者
Katayama, Michiru Tokushima University
キーワード
Chaos control
chaos intermittency
bifurcation
OGY method
laminar regime
資料タイプ
学術雑誌論文
抄録
Chaos intermittency is composed of a laminar regime, which exhibits almost periodic motion, and a burst regime, which exhibits chaotic motion; it is known that in chaos intermittency, switching between these regimes occurs irregularly. In the laminar regime of chaos intermittency, the periodic solution before the saddle node bifurcation is closely related to its generation, and its behavior becomes periodic in a short time; the laminar is not, however, a periodic solution, and there are no unstable periodic solutions nearby. Most chaos control methods cannot be applied to the problem of stabilizing a laminar response to a periodic solution since they refer to information about unstable periodic orbits. In this paper, we demonstrate a control method that can be applied to the control target with laminar phase of a dynamical system exhibiting chaos intermittency. This method records the time series of a periodic solution prior to the saddle node bifurcation as a pseudo-periodic orbit and feeds it back to the control target. We report that when this control method is applied to a circuit model, laminar motion can be stabilized to a periodic solution via control inputs of very small magnitude, for which robust control can be obtained.
掲載誌名
International Journal of Bifurcation and Chaos
ISSN
02181274
17936551
cat書誌ID
AA10810319
出版者
World Scientific
34
2
開始ページ
2450024
発行日
2024-02
備考
論文本文は2025-03以降公開予定
権利情報
Electronic version of an article ublished as International Journal of Bifurcation and Chaos, Vol.34, No.2, 2024, 2450024, 10.1142/S021812742450024X © World Scientific Publishing Company https://www.worldscientific.com/worldscinet/ijbc
EDB ID
出版社版DOI
出版社版URL
言語
eng
著者版フラグ
その他
部局
理工学系
情報センター