[PDF][PDF] 用一类特定的双耦合Duffing 振子系统检测强色噪声背景中的周期信号
李月, 路鹏, 杨宝俊, 赵雪平 - 2006 - wulixb.iphy.ac.cn
通过分析耦合参数作用, 系统所呈现大尺度周期相态的复杂性以及与系统在无噪声条件下状态的
比较, 得出耦合振子系统的动力学行为比同类单振子系统的复杂, 周期相态更稳定 …
比较, 得出耦合振子系统的动力学行为比同类单振子系统的复杂, 周期相态更稳定 …
On the development of a nonlinear time-domain numerical method for describing vortex-induced vibration and wake interference of two cylinders using experimental …
M Armin, S Day, M Karimirad, M Khorasanchi - Nonlinear Dynamics, 2021 - Springer
A nonlinear mathematical model is developed in the time domain to simulate the behaviour
of two identical flexibly mounted cylinders in tandem while undergoing vortex-induced …
of two identical flexibly mounted cylinders in tandem while undergoing vortex-induced …
Impulsive synchronization of discrete chaotic systems
Z Yong-Ai, N Yi-Bei, L Zeng-Rong - Chinese physics letters, 2003 - iopscience.iop.org
Impulsive synchronization of two chaotic maps is reformulated as impulsive control of the
synchronization error system. We then present a theorem on the asymptotic synchronization …
synchronization error system. We then present a theorem on the asymptotic synchronization …
Synchronization of uncertain time delay chaotic systems using the adaptive fuzzy method
G Xin-Ping, H Chang-Chun - Chinese physics letters, 2002 - iopscience.iop.org
We consider the synchronization problem of a class of first-order differential-delay chaotic
systems. We utilize time-delay fuzzy logic systems to approximate continuous nonlinear time …
systems. We utilize time-delay fuzzy logic systems to approximate continuous nonlinear time …
Wannier–Stark chaos of a Bose–Einstein condensate in 1D optical lattices
J Fang, W Hai - Physica B: Condensed Matter, 2005 - Elsevier
Using the idea of the macroscopic quantum wave function and the definition of the Melnikov
chaos, we investigate the spatially chaotic features of a Bose–Einstein condensate (BEC) in …
chaos, we investigate the spatially chaotic features of a Bose–Einstein condensate (BEC) in …
Stability of trapped Bose—Einstein condensates in one-dimensional tilted optical lattice potential
JS Fang, XP Liao - Chinese Physics B, 2011 - iopscience.iop.org
Using the direct perturbation technique, this paper obtains a general perturbed solution of
the Bose—Einstein condensates trapped in one-dimensional tilted optical lattice potential …
the Bose—Einstein condensates trapped in one-dimensional tilted optical lattice potential …
Chaos control and anti-control via a fuzzy neural network inverse system method
R Hai-Peng, L Ding - Chinese physics letters, 2002 - iopscience.iop.org
We propose a new method for chaos control and anti-control, which is referred to as the
fuzzy-neural network inverse system method (FNNIS). The Sugeno-type fuzzy-neural …
fuzzy-neural network inverse system method (FNNIS). The Sugeno-type fuzzy-neural …
Synchronizing chaotic systems in strict-feedback form using a single controller
C Shi-Hua, L Jie, F Jian-Wen, L Jin-Hu - Chinese physics letters, 2002 - iopscience.iop.org
A synchronization method is proposed for a class of chaotic systems which can be translated
into the strict-feedback form. This approach needs only a single controller and turns out to be …
into the strict-feedback form. This approach needs only a single controller and turns out to be …
Chaotic Ratchet Effect for Bose–Einstein Condensed Atoms in 1D Optical Lattices
F Jian-Shu, Z Xiang-Ping - Communications in Theoretical …, 2008 - iopscience.iop.org
The chaotic ratchet effect for Bose–Einstein condensed atoms in an optical lattice is
investigated. By using the direct perturbation method we obtain the chaotic solution of the …
investigated. By using the direct perturbation method we obtain the chaotic solution of the …
A method of controlling synchronization in different systems
J Chen, ZR Liu - Chinese physics letters, 2003 - cpl.iphy.ac.cn
м = (м1 м2 ЗЗЗ м )Ь E Ъ н = (н1 н2 ЗЗЗ н )Ь E Ъ when Ћ 1, (н) = (м) - (м) + г(" ") is hold, (м Page
1 CHIN.PHYS.LETT. Vol. 20, No. 9 (2003) 1441 A Method of Controlling Synchronization in …
1 CHIN.PHYS.LETT. Vol. 20, No. 9 (2003) 1441 A Method of Controlling Synchronization in …