Yan Zhenya
Key Laboratory of Mathematics Mechanization, Institute of Systems Science, AMSS, Chinese Academy of Sciences, Beijing 100080, People's Republic of China.
Chaos. 2005 Jun;15(2):23902. doi: 10.1063/1.1876612.
First, a Q-S (lag or anticipated) synchronization of continuous-time dynamical systems is defined. Second, based on a backstepping design with one controller, a systematic, concrete, and automatic scheme is developed to investigate the Q-S (lag or anticipated) synchronization between the drive system and response system with a strict-feedback form. Two identical hyperchaotic Tamasevicius-Namajunas-Cenys(TNC) systems as well as the hyperchaotic TNC system and hyperchaotic Rossler system are chosen to illustrate the proposed scheme. Numerical simulations are used to verify the effectiveness of the proposed scheme. The scheme can also be extended to study Q-S (lag or anticipated) synchronization between other dynamical systems with strict-feedback forms. With the aid of symbolic-numeric computation, the scheme can be performed to yield automatically the scalar controller in computer.
首先,定义了连续时间动态系统的Q-S(滞后或超前)同步。其次,基于具有一个控制器的反步设计,开发了一种系统、具体且自动的方案,以研究具有严格反馈形式的驱动系统和响应系统之间的Q-S(滞后或超前)同步。选择两个相同的超混沌塔马谢维丘斯-纳马朱纳斯-采尼斯(TNC)系统以及超混沌TNC系统和超混沌罗斯勒系统来说明所提出的方案。使用数值模拟来验证所提出方案的有效性。该方案还可以扩展到研究其他具有严格反馈形式的动态系统之间的Q-S(滞后或超前)同步。借助符号数值计算,可以在计算机中执行该方案以自动生成标量控制器。