带有数据丢失的混沌保密通信系统采样同步控制研究
[Abstract]:Chaotic system is a kind of extremely complex nonlinear system. Chaotic signal has the characteristics of natural concealment, extreme sensitivity of initial value, unpredictability, similar noise and so on, so it is very suitable for application in secure communication system. In recent years, with the rapid development of digital computer technology, sampling control has attracted wide attention. However, in the actual sampling control system, there are often some phenomena such as data loss of controller and random uncertainty of sampling period, which will seriously affect the performance of the system and even destroy the stability of the system. Therefore, this paper focuses on the loss of sampling data and synchronization control of random sampling periods in chaotic secure communication systems. The main contents of this paper are as follows: firstly, under multiple random sampling periods, the strategy of maintaining input is adopted to solve the synchronization control problem of drive-response chaotic system with control data loss. The data loss is transformed into the input delay of the system, and the error system is transformed into the time-delay system by the input-time-delay method to analyze the stability of the system. The controller gain can be solved by linear matrix inequality (LM [) method. The effectiveness of the controller design is verified by numerical simulation and it is verified that the synchronization system can be well applied to the chaotic secure communication system. Secondly, the zero input strategy is adopted to solve the synchronization problem of random sampling chaos with data loss of controller. The switched system with data loss is described as a class of switched delay systems with stable and unstable subsystems by means of the switched system method and the input delay method. The exponential stability of the system is analyzed based on the mean resident time method. At the same time, the relationship between the system performance and the data loss rate is discussed. From the numerical simulation, it can be concluded that the lower the data loss rate, the shorter the synchronization time between the two chaotic systems. At the same time, the simulation results show that the proposed synchronization control method can be well applied to chaotic secure communication systems. Thirdly, aiming at the synchronization control problem of the directed complex network with data loss, the strategy of maintaining input is adopted, and the sampling feedback synchronization controller is designed for all nodes, and the sufficient conditions for the synchronization of the complex network are obtained. Taking the directed complex network with 10 Lorenz nodes as an example, the numerical simulation verifies that there is no controller data packet loss in all nodes, some node controllers lose packets at the same time, and the controller does not lose packets at the same time. The simulation results show that the designed controller can make the system stable, that is, the effectiveness of the designed controller is verified. Similarly, it is verified that the chaotic masking technique can cover up and restore useful signals well. Finally, the research work of this paper is summarized, and the direction of further research is put forward.
【学位授予单位】:东北大学
【学位级别】:硕士
【学位授予年份】:2014
【分类号】:TN918;O415.5
【相似文献】
相关期刊论文 前10条
1 康大伟;低噪声的混沌保密通信电路[J];福州大学学报(自然科学版);2000年06期
2 康大伟;混沌保密通信电路方程参数的研究[J];漳州师范学院学报(自然科学版);2000年02期
3 李辉;冯四风;;基于粒子滤波参数估计的混沌保密通信系统[J];山东大学学报(理学版);2011年09期
4 方锦清,赵耿,罗晓曙;混沌保密通信应用研究的进展[J];广西师范大学学报(自然科学版);2002年01期
5 赵耿,方锦清;现代信息安全与混沌保密通信应用研究的进展[J];物理学进展;2003年02期
6 张向华;韦鹏程;;一种基于分段映射的混沌保密通信[J];西南师范大学学报(自然科学版);2009年02期
7 马菱旎;姚缨英;;混沌保密通信实验电路设计[J];实验技术与管理;2009年05期
8 付宏睿;俞建宁;张建刚;;基于复杂网络的多级混沌保密通信系统的研究[J];云南民族大学学报(自然科学版);2011年04期
9 方洁;张昭晗;邓玮;;基于广义函数投影同步的混沌保密通信研究[J];计算机仿真;2012年07期
10 赵耿,郑德玲,方锦清;混沌保密通信的最新进展[J];自然杂志;2001年02期
相关会议论文 前5条
1 王志敏;;一种可互访的混沌保密通信方法[A];第九届全国青年通信学术会议论文集[C];2004年
2 赵晓红;魏学业;刘东晓;卢鹏军;;混沌保密通信自适应控制与同步方法研究[A];开创新世纪的通信技术——第七届全国青年通信学术会议论文集[C];2001年
3 王绪安;管先念;杨晓元;吕明;;混沌保密通信在无线局域网中的应用研究[A];中国通信学会信息通信网络技术委员会2003年年会论文集[C];2003年
4 季兵;高怀;季晓勇;章德;;基于logistic映射的混沌保密通信同步方法[A];开创新世纪的通信技术——第七届全国青年通信学术会议论文集[C];2001年
5 禹思敏;吕金虎;;基于文氏电桥的超混沌保密通信及其DSP实现[A];第二十六届中国控制会议论文集[C];2007年
相关博士学位论文 前9条
1 王波;混沌保密通信中的同步技术研究[D];电子科技大学;2009年
2 王有维;混沌保密通信理论及方法研究[D];吉林大学;2007年
3 程孟凡;混沌光通信保密系统的理论与方法研究[D];华中科技大学;2012年
4 樊春霞;混沌保密通信系统的研究[D];南京航空航天大学;2005年
5 周广宇;混沌非线性动力学系统的控制及混沌保密通信系统的研究[D];浙江大学;1999年
6 赵柏山;混沌保密通信系统若干问题的研究[D];大连海事大学;2008年
7 龚剑扬;混沌保密通信关键技术研究[D];哈尔滨工程大学;2004年
8 钱恭斌;混沌保密通信及混沌控制的若干新算法研究[D];华南理工大学;2009年
9 舒永录;时滞混沌系统的构造与同步及其仿真研究[D];重庆大学;2005年
相关硕士学位论文 前10条
1 宫蕴瑞;混沌保密通信系统的实验研究[D];哈尔滨理工大学;2006年
2 王玲;基于垂直腔面发射激光器的宽带混沌保密通信研究[D];西南大学;2015年
3 毕宁军;带有数据丢失的混沌保密通信系统采样同步控制研究[D];东北大学;2014年
4 徐冰;几种典型的混沌保密通信系统的研究[D];大连理工大学;2008年
5 张俭峰;混沌保密通信系统研究[D];吉林大学;2007年
6 兀旦晖;混沌保密通信的若干问题研究[D];西安理工大学;2004年
7 颜金子;基于脉冲同步的光电外反馈混沌保密通信系统[D];华中科技大学;2012年
8 张源安;视频信号的网络实时混沌保密通信[D];中国人民解放军信息工程大学;2005年
9 刘双;基于寄存器的混沌保密通信和噪声分析[D];大连理工大学;2011年
10 张炎;基于非线性滤波同步的混沌保密通信方法研究[D];吉林大学;2013年
,本文编号:2363935
本文链接:https://www.wllwen.com/kejilunwen/wltx/2363935.html