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Chaos communication based on synchronization of discrete-time chaotic systems 总被引:2,自引:0,他引:2 下载免费PDF全文
A novel chaos communication method is proposed based on synchronization of discrete-time chaotic systems. This method uses a full-order state observer to achieve synchronization and secure communication between the transmitter and the receiver. Further, we present a multiple-access chaotic digital communication method by combining the observer with the on-line least square method. Simulation results are also given for illustration. 相似文献
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Generalized projective synchronization via the state observer and its application in secure communication 下载免费PDF全文
Based on the improved state observer and the pole placement technique,by adding a constant which extends the scope of use of the original system,a new design method of generalized projective synchronization is proposed.With this method,by changing the projective synchronization scale factor,one can achieve not only complete synchronization,but also anti-synchronization,as well as arbitrary percentage of projective synchronization,so that the system may attain arbitrary synchronization in a relatively short period of time,which makes this study more meaningful.By numerical simulation,and choosing appropriate scale factor,the results of repeated experiments verify that this method is highly effective and satisfactory.Finally,based on this method and the relevant feedback concept,a novel secure communication project is designed.Numerical simulation verifies that this secure communication project is very valid,and moreover,the experimental result has been greatly improved in decryption time. 相似文献
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This Letter analyzes the phase synchronization problem of autonomous chaotic systems. Based on the nonlinear state observer algorithm and the pole placement technique, a phase synchronization scheme is designed. The phase synchronization of a new chaotic system is achieved by using this observer controller. Numerical simulations further demonstrate the effectiveness of the proposed phase synchronization scheme. 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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针对连续时间混沌(超混沌)系统的控制问题, 提出了一种基于扩张状态观测器的快速全线性广义预测控制算法. 利用线性扩张状态观测器估计和补偿混沌(超混沌)系统的非线性动力学和存在的不确定性, 将原始对象近似转化为积分器形式, 随后针对单积分器设计广义预测控制, 解决了预测控制计算量大的问题. 阶跃系数矩阵可以直接得到解析解, 而对于未来输出的预测则可以根据最近两个时刻的输出采样值直接计算得到, 避免了使用自校正算法和在线求解丢番图方程. 该线性算法可以直接应用于非线性对象的控制系统设计. 将该算法应用于典型Lorenz混沌系统的控制中, 数学仿真结果验证了有效性. 相似文献
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A novel robust proportional-integral (PI) adaptive observer design for chaos synchronization 下载免费PDF全文
In this paper, chaos synchronization in the presence of parameter uncertainty, observer gain perturbation and exogenous input disturbance is considered. A nonlinear non-fragile proportional-integral (PI) adaptive observer is designed for the synchronization of chaotic systems; its stability conditions based on the Lyapunov technique are derived. The observer proportional and integral gains, by converting the conditions into linear matrix inequality (LMI), are optimally selected from solutions that satisfy the observer stability conditions such that the effect of disturbance on the synchronization error becomes minimized. To show the effectiveness of the proposed method, simulation results for the synchronization of a Lorenz chaotic system with unknown parameters in the presence of an exogenous input disturbance and abrupt gain perturbation are reported. 相似文献
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应用精确线性化方法,通过严格的状态变换和反馈方法,将非线性混沌系统线性化. 考虑到系统的部分状态变量无法测量,设计了混沌系统的状态观测器,求解出了状态观测器的反馈控制律. 将这种控制方法应用于Lorenz混沌系统的同步控制,仿真结果表明,系统三个状态变量的同步误差均能在很短的时间内收敛到零.因此,该同步控制方法在保证闭环系统稳定的前提下,具有较好的同步控制快速性和较高的控制精度.
关键词:
反馈线性化
混沌同步
状态观测器 相似文献
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提出用改进的状态观测器研究混沌广义同步问题.采用解析法求得了混沌广义同步的响应系统.从状态观测器理论,得到驱动和响应系统全局渐进线性广义同步的充分条件.以超混沌R?ssler系统为例,数值研究了该同步方法.结果表明了它的有效性.
关键词:
混沌
广义同步
状态观测器
R?ssler系统 相似文献
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A sliding mode control approach is proposed to implement the synchronization of the chain tree network. The doublescroll circuit chaos systems are treated as nodes and the network is constructed with the state variable coupling. By selecting a switching sliding surface, the chaos synchronization of the network is achieved with one control input only. The stability analysis and the numerical simulations demonstrate that the complete synchronization in a chain network can be realized for all nodes. 相似文献
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针对部分状态不可测的永磁同步电机混沌系统, 结合自适应滑模控制和扩张状态观测器理论, 提出一种基于扩张状态观测器的永磁同步电机自适应混沌控制方法, 取消了系统所有状态完全可测的限制. 通过坐标变换, 将永磁同步电机混沌模型变为更适宜控制器设计的Brunovsky标准形式. 在系统部分状态和非线性不确定项上界均未知的情况下, 基于扩张状态观测器估计系统未知状态及不确定项, 并设计自适应滑模控制器, 保证系统状态快速稳定收敛至零点. 仿真结果表明, 该控制器能够改善滑模控制的抖振问题以及提高系统鲁棒性.
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永磁同步电机
混沌控制
扩张状态观测器
自适应滑模 相似文献
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The synchronizing problem of a chaotic system is investigated based on the observer design. The nonlinear section is assumed to satisfy the Lipschitz condition. Firstly, the normal observer is designed based on the known Lipschitz constant and the results are given in linear matrix inequality (LMI) form. Then a fairly simple adaptive observer is designed with the Lipschitz constant unknown. Simulations on synchronizing the Lorenz system are investigated and the results show the validity and feasibility of our main results. 相似文献