共查询到16条相似文献,搜索用时 203 毫秒
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基于Lyapunov稳定性理论, 结合反馈控制和自适应控制方法, 提出了一种异结构混沌系统同步的新方法. 该方法适用范围广, 不仅能为人们提供控制器的一般选取办法,而且对于具体的误差系统还可进一步简化控制器结构, 具有稳健、易于实现等优点. 通过对Lorenz系统与Liu系统、超混沌的R?ssler系统与广义Lorenz系统的同步数值仿真, 证实了该方法的有效性.
关键词:
混沌同步
Lorenz系统
R?ssler系统
Lyapunov函数 相似文献
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基于分数阶系统稳定性理论,提出了用状态观测器来实现分数阶混沌系统完全状态投影同步的思想. 设计的状态观测器能够实现一类非线性分数阶系统的完全状态投影同步而不要求分数阶混沌系统是部分线性的,推广了投影同步的应用范围,且无需计算系统的条件Lyapunov指数. 另外,该方法理论严格,设计简单,能够达到任意比例因子的完全状态同步. 最后,利用该方法实现了分数阶Rssler系统的完全状态投影同步,数值仿真结果证实了它的有效性.
关键词:
分数阶
混沌系统
状态观测器
投影同步 相似文献
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A new scheme to generalized (lag, anticipated, and complete) synchronization in chaotic and hyperchaotic systems 总被引:1,自引:0,他引:1
Yan Z 《Chaos (Woodbury, N.Y.)》2005,15(1):13101
In this paper, a generalized (lag, anticipated, and complete) synchronization of a class of continuous-time systems is defined. A systematic, powerful and concrete scheme is developed to investigate the generalized (lag, anticipated, and complete) synchronization between the drive system and response system based on the active control idea. The hyperchaotic R?ssler system, transformed R?ssler and Chen system as well as two coupled nonidentical R?ssler oscillators are chosen to illustrate the proposed scheme. Numerical simulations are used to verify the effectiveness of the proposed scheme. The scheme can be also extended to research generalized (lag, anticipated, and complete) synchronization between other dynamical systems. 相似文献
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This paper describes the method of synchronizing slave to the master trajectory using an intermittent state observer by constructing a synchronizer which drives the response system globally tracing the driving system asymptotically. It has been shown from the theory of synchronization error-analysis that a satisfactory result of chaos synchronization is expected under an appropriate intermittent period and state observer. Compared with continuous control method, the proposed intermittent method can target the desired orbit more efficiently. The application of the method is demonstrated on the hyperchaotic R?ssler systems. Numerical simulations show that the length of the synchronization interval τ_s is of crucial importance for our scheme, and the method is robust with respect to parameter mismatch. 相似文献
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针对一类混沌系统, 当不满足观测器匹配条件时, 讨论了基于观测器的混沌同步及保密通讯问题.通过设计辅助驱动信号, 使得观测器匹配条件得以满足.为了处理辅助驱动信号中的未知变量, 使用高增益观测器作为近似微分器, 不仅给出了辅助驱动信号的估计值, 还给出了辅助驱动信号的微分估计值.基于辅助驱动信号的估计值, 提出了一种能与非线性项和干扰影响解耦的降维观测器作为响应系统, 达到了与驱动系统的同步.在同步的基础上, 再基于辅助驱动信号及其微分的估计值, 提出了一种保密信息还原的方法.最后, 针对Rössler系统进行仿真, 仿真结果表明所提出的方法是有效的.
关键词:
辅助驱动信号
混沌同步
降维观测器
保密通讯 相似文献
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E.J. Ngamga D.V. Senthilkumar J. Kurths 《The European physical journal. Special topics》2010,191(1):15-27
We show that dynamics between order and chaos, namely strange nonchaotic dynamics can be efficiently studied by means of recurrence
properties. Different transitions to this dynamics in coupled R?ssler oscillators are revealed by some measures of complexity
based on the recurrence time, which is the time needed for a system to recur to a former visited neighborhood. Furthermore,
regions of the parameter space where the system is in non-phase, imperfect-phase or phase synchronization are depicted by
means of recurrence based indices such as the generalized autocorrelation function and the correlation of probability of recurrence. 相似文献
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This paper reports that an impulsive control theory for synchronization of nonlinear
R?ssler chaotic systems is developed. A new framework for impulsive
synchronization between such chaotic systems is presented, which makes the
synchronization error system a linear impulsive control system. Therefore, it is
easy to derive the impulsive synchronization law. The proposed impulsive control
scheme is illustrated by nonlinear R?ssler chaotic systems and the simulation
results demonstrate the effectiveness of the method. 相似文献
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A new output feedback synchronization theorem for a class of chaotic systems with a scalar transmitted signal 下载免费PDF全文
This paper proposes a new, simple and yet applicable output feedback
synchronization theorem for a large class of chaotic systems. We take a
linear combination of drive system state variables as a scale-driving
signal. It is proved that synchronization between the drive and the response
systems can be obtained via a simple linear output error feedback control.
The linear feedback gain is a function of a free parameter. The approach is
illustrated using the R\"{o}ssler hyperchaotic systems and Chua's chaotic
oscillators. 相似文献