Liu Fang, Song Qiang, Cao Jinde
School of Electronics and Information, Hangzhou Dianzi University, Hangzhou 310018, China.
Chaos. 2008 Dec;18(4):043120. doi: 10.1063/1.3029670.
This paper improves the existing entrainment control approaches and develops unified schemes to chaos control and generalized (lag, anticipated, and complete) synchronization of nonlinear dynamical systems. By introducing impulsive effects to the open-loop control method, we completely remove its restrictions on goal dynamics and initial conditions, and derive a sufficient condition to estimate the upper bound of impulsive intervals to ensure the global asymptotic stability. We then propose two effective ways to implement the entrainment strategy which combine open-loop and closed-loop control, and we prove that the feedback gains can be chosen according to a lower bound or be tuned with an adaptive control law. Numerical examples are given to verify the theoretical results and to illustrate their applications.
本文改进了现有的同步控制方法,开发了用于非线性动力系统混沌控制和广义(滞后、超前和完全)同步的统一方案。通过将脉冲效应引入开环控制方法,我们完全消除了其对目标动力学和初始条件的限制,并推导了一个充分条件来估计脉冲间隔的上限,以确保全局渐近稳定性。然后,我们提出了两种结合开环和闭环控制来实现同步策略的有效方法,并证明反馈增益可以根据下限进行选择或通过自适应控制律进行调整。给出了数值例子来验证理论结果并说明其应用。