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Robust networked H_∞ synchronization of nonidentical chaotic Lur'e systems
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作者 杨德东 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第1期131-135,共5页
We mainly investigate the robust networked H~ synchronization problem of nonidentical chaotic Lur'e systems. In the design of the synchronization scheme, some network characteristics, such as nonuniform sampling, tra... We mainly investigate the robust networked H~ synchronization problem of nonidentical chaotic Lur'e systems. In the design of the synchronization scheme, some network characteristics, such as nonuniform sampling, transmission- induced delays, and data packet dropouts, are considered. The parameters of master-slave chaotic Lur'e systems often allow differences. The sufficient condition in terms of linear matrix inequality (LMI) is obtained to guarantee the dissipative synchronization of nonidentical chaotic Lur'e systems in network environments. A numerical example is given to illustrate the validity of the proposed method. 展开更多
关键词 SYNCHRONIZATION lure systems networked control DISSIPATIVITY
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Synchronization of chaotic Lur'e systems with delayed feedback control using deadzone nonlinearity
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作者 S.M.Lee O.M.Kwon Ju H.Park 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第1期209-214,共6页
In this paper we present a synchronization method for chaotic Lur'e systems by constructing a new piecewise Lyapunov function. Using a delayed feedback control scheme, a delay-dependent stability criterion is derived... In this paper we present a synchronization method for chaotic Lur'e systems by constructing a new piecewise Lyapunov function. Using a delayed feedback control scheme, a delay-dependent stability criterion is derived for the synchronization of chaotic systems that are represented by Lur'e systems with deadzone nonlinearity. Based on the Lyapunov-Krasovskii functional and by using some properties of the nonlinearity, a new delay-dependent stabilization condition for synchronization is obtained via linear matrix inequality (LMI) formulation. The criterion is less conservative than existing ones, and it will be verified through a numerical example. 展开更多
关键词 lure systems SYNCHRONIZATION DeADZONe linear matrix inequality
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Exponential synchronization of stochastic impulsive perturbed chaotic Lur'e systems with time-varying delay and parametric uncertainty
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作者 马铁东 张化光 浮洁 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第12期4407-4417,共11页
This paper is devoted to investigating the scheme of exponential synchronization for uncertain stochastic impulsive perturbed chaotic Lur'e systems. The parametric uncertainty is assumed to be norm bounded. Based on ... This paper is devoted to investigating the scheme of exponential synchronization for uncertain stochastic impulsive perturbed chaotic Lur'e systems. The parametric uncertainty is assumed to be norm bounded. Based on the Lyapunov function method, time-varying delay feedback control technique and a modified Halanay inequality for stochastic differential equations, several sufficient conditions are presented to guarantee the exponential synchronization in mean square between two identical uncertain chaotic Lur'e systems with stochastic and impulsive perturbations. These conditions are expressed in terms of linear matrix inequalities (LMIs), which can easily be checked by utilizing the numerically efficient Matlab LMI toolbox. It is worth pointing out that the approach developed in this paper can provide a more general framework for the synchronization of multi-perturbation chaotic Lur'e systems, which reflects a more realistic dynamics. Finally, a numerical example is provided to demonstrate the effectiveness of the proposed method. 展开更多
关键词 chaotic lure systems exponential synchronization time-varying delay parametric uncertainty
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On absolute stability of Lur'e control systems with multiple non-linearities using linear matrix inequalities
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作者 MinWU YongHE JinhuaSHE 《控制理论与应用(英文版)》 EI 2004年第2期131-136,共6页
Necessary and suffcient conditions for the existence of a Lyapunov function in the Lur ’ e form to guarantee the absolute stability of Lur’ e control systems with multiple non-linearities are discussed in this paper... Necessary and suffcient conditions for the existence of a Lyapunov function in the Lur ’ e form to guarantee the absolute stability of Lur’ e control systems with multiple non-linearities are discussed in this paper. It simplifies the existence problem to one of solving a set of linear matrix inequalities (LMIs). If those LMIs are feasible, free parameters in the Lyapunov function, such as the positive definite matrix and the coefficients of the integral terms, are given by the solution of the LMIs. Otherwise, this Lyapunov function does not exist. Some sufficient conditions are also obtained for the robust absolute stability of uncertain systems. A numerical example is provided to demonstrate the effectiveness of the proposed method. 展开更多
关键词 lure control systems Absolute stability Robustness Lyapunov function Linear matrix inequality
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On Delay-dependent and Delay-derivative-dependent Stability and Stabilization for Lur’e Systems with Slowvarying Delay
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作者 Yuan He Jin-Wen Liu +2 位作者 Xue-Qin Cui Jin-Tian Hu Lian-Sheng Zhang 《Journal of Electronic Research and Application》 2020年第1期18-25,共8页
This note is concerned with the absolutestability for time-varying delay Lur’e system withsector-bounded nonlinearity. Improved delay-dependentand delay-derivative-dependent stability criteria areobtained in the form... This note is concerned with the absolutestability for time-varying delay Lur’e system withsector-bounded nonlinearity. Improved delay-dependentand delay-derivative-dependent stability criteria areobtained in the form of linear matrix inequalities (LMIs)by constructing a modified augmented Lyapunov-Krasovskii (LK) functional without applying the modeltransformation or the bounding techniques for crossterms. Thus, the presented delay-dependent criteria areless conservative than those in the literature. Moreover,state feedback stabilizing controllers based on theproposed stability criteria are designed. Numericalexample demonstrates the effectiveness and superiorityof the proposed method. 展开更多
关键词 lure systems time-delay Absolute STABILITY LMI STABILIZATION
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不确定时滞Lur’e控制系统的鲁棒H_∞观测器设计 被引量:2
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作者 杨冬梅 张静 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2013年第3期305-307,325,共4页
研究一类具有不确定时滞性Lur’e控制系统的状态观测器设计和基于状态观测器的鲁棒控制器设计问题.在系统状态不能直接被测量的情况下,通过构造增广系统,利用Lyapunov稳定性理论,得到了关于Lur’e控制系统存在状态观测器和基于状态观测... 研究一类具有不确定时滞性Lur’e控制系统的状态观测器设计和基于状态观测器的鲁棒控制器设计问题.在系统状态不能直接被测量的情况下,通过构造增广系统,利用Lyapunov稳定性理论,得到了关于Lur’e控制系统存在状态观测器和基于状态观测器的鲁棒控制器的充分条件,并利用MATLAB的LMI工具箱求解状态观测器和控制器参数.最后,通过仿真实例验证了该设计方法的有效性和可行性. 展开更多
关键词 lure控制系统 观测器 不确定性 鲁棒控制器 线性矩阵不等式(LMI)
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一类Lur'e时滞系统新的时滞依赖绝对稳定判据 被引量:1
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作者 张芬 《纺织高校基础科学学报》 CAS 2011年第3期432-436,共5页
考虑了一类Lur'e时变时滞系统的绝对稳定问题,通过构造适当的Lyapunov函数和引入一些松弛矩阵,以LMI形式得到了新的时滞依赖绝对稳定判据.最后,给出了2个数值例子,结果验证了方法的有效性和较弱的保守性.
关键词 时滞依赖绝对稳定 lur'e时滞系统 LMI
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一类改进混沌Lur′e系统的滞后同步判据
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作者 汤红吉 余跃 张正娣 《动力学与控制学报》 2022年第2期45-49,共5页
本文研究了混沌Lur′e系统的滞后同步问题.通过合理构造增广Lyapunov-Krasovskii泛函,使得增广向量不仅包括单积分项以及双积分项,而且加入了增广的三重积分项.在估计Lyapunov-Krasovskii泛函导数表达式的基础上,通过零等式引入自由矩阵... 本文研究了混沌Lur′e系统的滞后同步问题.通过合理构造增广Lyapunov-Krasovskii泛函,使得增广向量不仅包括单积分项以及双积分项,而且加入了增广的三重积分项.在估计Lyapunov-Krasovskii泛函导数表达式的基础上,通过零等式引入自由矩阵,同时利用积分不等式,求得以线性矩阵不等式形式表达下的混沌Lur′e系统滞后同步的判据,即充分条件.最后,通过数值计算表明本文理论研究的有效性. 展开更多
关键词 lur′e系统 同步 滞后状态反馈 增广Lyapunov-Krasovskii泛函
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不确定奇异时滞Lur′e系统的非脆弱保性能控制
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作者 吴保卫 李俏 罗立娑 《汕头大学学报(自然科学版)》 2011年第2期12-22,共11页
研究了一类不确定奇异时滞Lur′e系统的非脆弱保性能控制器设计问题.将非脆弱思想引入到非线性部分具有区间限制、且带有不确定项的奇异时滞Lur′e系统中.运用线性矩阵不等式(LMI)方法,给出了奇异时滞Lur′e系统的非脆弱保性能控制器存... 研究了一类不确定奇异时滞Lur′e系统的非脆弱保性能控制器设计问题.将非脆弱思想引入到非线性部分具有区间限制、且带有不确定项的奇异时滞Lur′e系统中.运用线性矩阵不等式(LMI)方法,给出了奇异时滞Lur′e系统的非脆弱保性能控制器存在的充分条件和相应的控制器,同时,给出了系统的最小性能指标.最后,用数值算例验证了该方法的有效性. 展开更多
关键词 不确定 奇异时滞lur′e系统 非脆弱控制器 保性能控制 线性矩阵不等式(LMI)
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混沌Lur′e系统基于时滞反馈PD控制的同步 被引量:3
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作者 严欢 高岩波 《南通大学学报(自然科学版)》 CAS 2017年第4期12-21,共10页
研究了混沌Lur′e系统同步的时滞反馈比例-微分(PD)控制器设计问题.系统中的非线性函数假设属于一个既有上界又有下界的扇形,这比相关文献中所使用的假设更具一般性.通过应用自由矩阵积分不等式来估计所构造的Lyapunov-Krasovskii泛函(L... 研究了混沌Lur′e系统同步的时滞反馈比例-微分(PD)控制器设计问题.系统中的非线性函数假设属于一个既有上界又有下界的扇形,这比相关文献中所使用的假设更具一般性.通过应用自由矩阵积分不等式来估计所构造的Lyapunov-Krasovskii泛函(LKF)的导数,提出了以一组线性矩阵不等式(LMIs)形式给出的同步判据,相应的控制器增益矩阵可以通过求解LMIs来获得,所得判据中不要求构造的LKF泛函中所有对称矩阵都正定.时滞Chua电路的数值仿真验证了该控制方法的有效性. 展开更多
关键词 混沌lur′e系统 同步 时滞反馈PD控制
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Master-slave synchronization of singular Lur'e systems with time-delay
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作者 Zebin YANG Xinhua ZHANG Xiaofu JI 《控制理论与应用(英文版)》 EI 2011年第4期594-598,共5页
This paper is concerned with the problem of designing a time-delay output feedback control law for masterslave synchronization of singular Lur'e systems. Using generalized Lyapunov stability theory, a sufficient cond... This paper is concerned with the problem of designing a time-delay output feedback control law for masterslave synchronization of singular Lur'e systems. Using generalized Lyapunov stability theory, a sufficient condition for the existence of such feedback control law is given and an explicit expression of such control law is also achieved. These algorithms are formulated in terms of linear matrix inequalities, which can be easily performed numerically. A numerical example is used to illustrate the effectiveness of the design method. 展开更多
关键词 Singular lure systems time-delay synchronization Linear matrix inequality
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Adaptive input-to-state stable synchronization for uncertain time-delay Lur’e systems
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作者 Zhi Zhang Zhilian Yan +1 位作者 Jianping Zhou Yebin Chen 《Communications in Theoretical Physics》 SCIE CAS CSCD 2021年第8期31-40,共10页
This paper is dedicated to the study of adaptive input-to-state stable synchronization of uncertain time-delay Lur’e systems with exterior interference. With the help of the Lyapunov function approach, a sufficient c... This paper is dedicated to the study of adaptive input-to-state stable synchronization of uncertain time-delay Lur’e systems with exterior interference. With the help of the Lyapunov function approach, a sufficient condition for the input-to-state stability of the synchronization-error system is derived, which is theoretically less conservative than a previously reported criterion in the absence of parameter uncertainties. On the basis of the present condition, a co-design of the feedback gain and estimates of the uncertain parameters is given to determine the desired adaptive synchronization controller. Finally, an example with simulations is provided to demonstrate the applicability and superiority of the analysis and design strategies. 展开更多
关键词 input-to-state stability lure systems parameter uncertainty adaptive control
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Stability and Passivity Analysis for Lur'e Singular Systems with Markovian Switching
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作者 Ping-Fang Zhou Yue-Ying Wang +2 位作者 Quan-Bao Wang Ji-An Chen Deng-Ping Duan 《International Journal of Automation and computing》 EI CSCD 2013年第1期79-84,共6页
This paper is concerned with the stochastic stability and passivity analysis for a class of Lur’e singular systems with time-varying delay and Markovian switching. By using the free-weighting matrices approach, a del... This paper is concerned with the stochastic stability and passivity analysis for a class of Lur’e singular systems with time-varying delay and Markovian switching. By using the free-weighting matrices approach, a delay-dependent stability criterion, which guarantees that the system is stochastically stable and robustly passive, is derived in terms of linear matrix inequality (LMI). Two numerical examples are provided to illustrate the effectiveness of the proposed method. 更多还原 展开更多
关键词 lure singular time-delay systems Markovian jump systems DeLAY-DePeNDeNT PASSIVITY linear matrix inequality (LMI)
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Frequency-domain L2-stability conditions for time-varying linear and nonlinear MIMO systems 被引量:1
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作者 Zhihong HUANG Y. V. VENKATESH Cheng XIANG Tong Heng LEE 《Control Theory and Technology》 EI CSCD 2014年第1期13-34,共22页
The paper deals with the g2-stability analysis of multi-input-multi-output (MIMO) systems, governed by integral equations, with a matrix of periodic/aperiodic time-varying gains and a vector of monotone, non-monoton... The paper deals with the g2-stability analysis of multi-input-multi-output (MIMO) systems, governed by integral equations, with a matrix of periodic/aperiodic time-varying gains and a vector of monotone, non-monotone and quasi-monotone nonlin- earities. For nonlinear MIMO systems that are described by differential equations, most of the literature on stability is based on an application of quadratic forms as Lyapunov-function candidates. In contrast, a non-Lyapunov framework is employed here to derive new and more general g2-stability conditions in the frequency domain. These conditions have the following features: i) They are expressed in terms of the positive definiteness of the real part of matrices involving the transfer function of the linear time-invariant block and a matrix multiplier function that incorporates the minimax properties of the time-varying linear/nonlinear block, ii) For certain cases of the periodic time-varying gain, they contain, depending on the multiplier function chosen, no restrictions on the normalized rate of variation of the time-varying gain, but, for other periodic/aperiodic time-varying gains, they do. Overall, even when specialized to periodic-coefficient linear and nonlinear MIMO systems, the stability conditions are distinct from and less restrictive than recent results in the literature. No comparable results exist in the literature for aperiodic time-varying gains. Furthermore, some new stability results concerning the dwell-time problem and time-varying gain switching in linear and nonlinear MIMO systems with periodic/aperiodic matrix gains are also presented. Examples are given to illustrate a few of the stability theorems. 展开更多
关键词 Circle criterion K-P-Y lemma L2-stability lure problem Multiplier function Nyquist's criterion Switched systems Time-varying system
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On the l_2-stability of time-varying linear and nonlinear discrete-time MIMO systems
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作者 Y.V.VENKATESH 《Control Theory and Technology》 EI CSCD 2014年第3期250-274,共25页
New conditions are derived for the l2-stability of time-varying linear and nonlinear discrete-time multiple-input multipleoutput (MIMO) systems, having a linear time time-invariant block with the transfer function F... New conditions are derived for the l2-stability of time-varying linear and nonlinear discrete-time multiple-input multipleoutput (MIMO) systems, having a linear time time-invariant block with the transfer function F(z), in negative feedback with a matrix of periodic/aperiodic gains A(k), k = 0,1, 2,... and a vector of certain classes of non-monotone/monotone nonlinearities φp(-), without restrictions on their slopes and also not requiring path-independence of their line integrals. The stability conditions, which are derived in the frequency domain, have the following features: i) They involve the positive definiteness of the real part (as evaluated on |z| = 1) of the product of Г (z) and a matrix multiplier function of z. ii) For periodic A(k), one class of multiplier functions can be chosen so as to impose no constraint on the rate of variations A(k), but for aperiodic A(k), which allows a more general multiplier function, constraints are imposed on certain global averages of the generalized eigenvalues of (A(k + 1),A(k)), k = 1, 2 iii) They are distinct from and less restrictive than recent results in the literature. 展开更多
关键词 Circle criterion Discrete-time MIMO system l2-stability Feedback system stability Linear matrix inequalities (LMI) lure problem Multiplier functions Nyquist's criterion Periodic coefficient systems Popov's criterion Time-varying systems
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