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Controlled synchronization of complex network with different kinds of nodes 被引量:4
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作者 Zhengquan YANG Zhongxin LIU Zengqiang CHEN Zhuzhi YUAN 《控制理论与应用(英文版)》 EI 2008年第1期11-15,共5页
In this paper, a new dynamical network model is introduced, in which the nodes of the network are different. It is shown that by the designed controllers, the state of the network can exponentially synchronize onto a ... In this paper, a new dynamical network model is introduced, in which the nodes of the network are different. It is shown that by the designed controllers, the state of the network can exponentially synchronize onto a homogeneous stationary state. Some criteria are derived and some examples are presented. The numerical simulations coincide with theoretical analysis. 展开更多
关键词 Complex network SYNCHRONIZATION Pinning control CHAOS Exponential stable
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Cluster consensus of second-order multi-agent systems via pinning control 被引量:9
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作者 路晓庆 Francis Austin 陈士华 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第12期90-96,共7页
This paper investigates the cluster consensus problem for second-order multi-agent systems by applying the pinning control method to a small collection of the agents. Consensus is attained independently for different ... This paper investigates the cluster consensus problem for second-order multi-agent systems by applying the pinning control method to a small collection of the agents. Consensus is attained independently for different agent clusters according to the community structure generated by the group partition of the underlying graph and sufficient conditions for both cluster and general consensus are obtained by using results from algebraic graph theory and the LaSalle Invariance Principle. Finally, some simple simulations are presented to illustrate the technique. 展开更多
关键词 second-order multi-agent systems cluster consensus pinning control LaSalle invariance principle
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Pinning-controlled synchronization of complex networks with bounded or unbounded synchronized regions 被引量:5
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作者 邹艳丽 陈关荣 《Chinese Physics B》 SCIE EI CAS CSCD 2009年第8期3337-3346,共10页
This paper studies pinning-controlled synchronization of complex networks with bounded or unbounded synchronized regions. To study a state-feedback pinning-controlled network with N nodes, it first converts the contro... This paper studies pinning-controlled synchronization of complex networks with bounded or unbounded synchronized regions. To study a state-feedback pinning-controlled network with N nodes, it first converts the controlled network to an extended network of N+1 nodes without controls. It is shown that the controlled synchronizability of the given network is determined by the real part of the smallest nonzero eigenvalue of the coupling matrix of its extended network when the synchronized region is unbounded; but it is determined by the ratio of the real parts of the largest and the smallest nonzero eigenvalues of the coupling matrix when the synchronized region is bounded. Both theoretical analysis and numerical simulation show that the portion of controlled nodes has no critical values when the synchronized region is unbounded, but it has a critical value when the synchronized region is bounded. In the former case, therefore, it is possible to control the network to achieve synchronization by pinning only one node. In the latter case, the network can achieve controlled synchronization only when the portion of controlled nodes is larger than the critical value. 展开更多
关键词 SYNCHRONIZATION pinning control complex network synchronized region
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Disturbance rejection and H_∞ pinning control of linear complex dynamical networks 被引量:2
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作者 李忠奎 段志生 陈关荣 《Chinese Physics B》 SCIE EI CAS CSCD 2009年第12期5228-5234,共7页
This paper concerns the disturbance rejection problem of a linear complex dynamical network subject to external disturbances. A dynamical network is said to be robust to disturbance, if the H∞ norm of its transfer fu... This paper concerns the disturbance rejection problem of a linear complex dynamical network subject to external disturbances. A dynamical network is said to be robust to disturbance, if the H∞ norm of its transfer function matrix from the disturbance to the performance variable is satisfactorily small. It is shown that the disturbance rejection problem of a dynamical network can be solved by analysing the H∞ control problem of a set of independent systems whose dimensions are equal to that of a single node. A counter-intuitive result is that the disturbance rejection level of the whole network with a diffusive coupling will never be better than that of an isolated node. To improve this, local feedback injections are applied to a small fraction of the nodes in the network. Some criteria for possible performance improvement are derived in terms of linear matrix inequalities. It is further demonstrated via a simulation example that one can indeed improve the disturbance rejection level of the network by pinning the nodes with higher degrees than pinning those with lower degrees. 展开更多
关键词 complex dynamical network pinning control H∞ control ROBUSTNESS
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Cost and effect of pinning control for network synchronization 被引量:2
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作者 李嵘 段志生 陈关荣 《Chinese Physics B》 SCIE EI CAS CSCD 2009年第1期106-118,共13页
The problem of pinning control for the synchronization of complex dynamical networks is discussed in this paper. A cost function of the controlled network is defined by the feedback gain and the coupling strength of t... The problem of pinning control for the synchronization of complex dynamical networks is discussed in this paper. A cost function of the controlled network is defined by the feedback gain and the coupling strength of the network. An interesting result is that a lower cost is achieved by using the control scheme of pinning nodes with smaller degrees. Some strict mathematical analyses are presented for achieving a lower cost in the synchronization of different star-shaped networks. Numerical simulations on some non-regular complex networks generated by the Barabasi-Albert model and various star-shaped networks are performed for verification and illustration. 展开更多
关键词 complex dynamical network pinning control exponential stability
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Pinning control of a generalized complex dynamical network model 被引量:1
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作者 Huizhong YANG Li SHENG 《控制理论与应用(英文版)》 EI 2009年第1期1-8,共8页
This paper investigates the local and global synchronization of a generalized complex dynamical network model with constant and delayed coupling. Without assuming symmetry of the couplings, we proved that a single con... This paper investigates the local and global synchronization of a generalized complex dynamical network model with constant and delayed coupling. Without assuming symmetry of the couplings, we proved that a single controller can pin the generalized complex network to a homogenous solution. Some previous synchronization results are generalized. In this paper, we first discuss how to pin an array of delayed neural networks to the synchronous solution by adding only one controller. Next, by using the Lyapunov functional method, some sufficient conditions are derived for the local and global synchronization of the coupled systems. The obtained results are expressed in terms of LMIs, which can be efficiently checked by the Matlab LMI toolbox. Finally, an example is given to illustrate the theoretical results. 展开更多
关键词 Complex network Neural network Pinning control SYNCHRONIZATION Delayed coupling
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Controllability robustness of complex networks 被引量:2
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作者 Guanrong Chen 《Journal of Automation and Intelligence》 2022年第1期2-7,共6页
This article presents an overview on the state-of-the-art development in complex network controllability and its robustness against malicious attacks and random failures.Specifically,it first reviews the concepts of n... This article presents an overview on the state-of-the-art development in complex network controllability and its robustness against malicious attacks and random failures.Specifically,it first reviews the concepts of network pinning control and controllability,and then discusses the network controllability robustness against destructive attacks by means of node-and/or edge-removal.The related issue of network connectivity robustness is also discussed.To that end,it furthermore provides an brief overview on the recent development of a machine-learning approach for predicting optimal network controllability robustness,which may shed some lights on the understanding of optimal network structures for various design considerations. 展开更多
关键词 Complex network Pinning control controlLABILITY CONNECTIVITY ROBUSTNESS
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Comparison between pinning control of different chaotic complex dynamical networks
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作者 Linying XIANG Zhongxin LIU +3 位作者 Zengqiang CHEN Fei CHEN Ge GUO Zhuzhi YUAN 《控制理论与应用(英文版)》 EI 2008年第1期2-10,共9页
The stabilization properties of various typical complex dynamical networks composed of chaotic nodes are theoretically investigated and numerically simulated in detail. Some local stability properties of such pinned n... The stabilization properties of various typical complex dynamical networks composed of chaotic nodes are theoretically investigated and numerically simulated in detail. Some local stability properties of such pinned networks are derived and the valid stability regions are estimated based on eigenvalue analysis. Numerical simulations of such networks are given to explain why significantly less local controllers are needed by the specifically pinning scheme, which pins the most highly connected nodes in scale-free networks, than that required by the randomly pinning scheme. Also, it is explained why there is no significant difference between the two schemes for controlling random-graph networks and small-world networks. 展开更多
关键词 Complex dynamical network Specifically pinning control Randomly pinning control Lorenz system CHAOTIC
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Trajectory Control of Scale-Free Dynamical Networks with Exogenous Disturbances
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作者 杨洪勇 张顺 宗广灯 《Communications in Theoretical Physics》 SCIE CAS CSCD 2011年第1期185-192,共8页
In this paper, the trajectory control of multi-agent dynamical systems with exogenous disturbances is studied. Suppose multiple agents composing of a scale-free network topology, the performance of rejecting disturban... In this paper, the trajectory control of multi-agent dynamical systems with exogenous disturbances is studied. Suppose multiple agents composing of a scale-free network topology, the performance of rejecting disturbances for the low degree node and high degree node is analyzed. Firstly, the consensus of multi-agent systems without disturbances is studied by designing a pinning control strategy on a part of agents, where this pinning control can bring multiple agents' states to an expected consensus track. Then, the influence of the disturbances is considered by developing disturbance observers, and disturbance observers based control (DOBC) are developed for disturbances generated by an exogenous system to estimate the disturbances. Asymptotical consensus of the multi-agent systems with disturbances under the composite controller can be achieved for scale-free network topology. Finally, by analyzing examples of multi-agent systems with scale-free network topology and exogenous disturbances, the verities of the results are proved. Under the DOBC with the designed parameters, the trajectory convergence of multi-agent systems is researched by pinning two class of the nodes. We have found that it has more stronger robustness to exogenous disturbances for the high degree node pinned than that of the low degree node pinned. 展开更多
关键词 multi-agent systems exogenous disturbances scale-free networks trajectory control pinning control disturbance observers
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SYNCHRONIZATION OF SINGULAR MARKOVIAN JUMPING NEUTRAL COMPLEX DYNAMICAL NETWORKS WITH TIME-VARYING DELAYS VIA PINNING CONTROL
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作者 K.S.ANAND J.YOGAMBIGAI +2 位作者 G.A.HARISH BABU M.SYED ALI S.PADMANABHAN 《Acta Mathematica Scientia》 SCIE CSCD 2020年第3期863-886,共24页
This article discusses the synchronization problem of singular neutral complex dynamical networks(SNCDN)with distributed delay and Markovian jump parameters via pinning control.Pinning control strategies are designed ... This article discusses the synchronization problem of singular neutral complex dynamical networks(SNCDN)with distributed delay and Markovian jump parameters via pinning control.Pinning control strategies are designed to make the singular neutral complex networks synchronized.Some delay-dependent synchronization criteria are derived in the form of linear matrix inequalities based on a modified Lyapunov-Krasovskii functional approach.By applying the Lyapunov stability theory,Jensen's inequality,Schur complement,and linear matrix inequality technique,some new delay-dependent conditions are derived to guarantee the stability of the system.Finally,numerical examples are presented to illustrate the effectiveness of the obtained results. 展开更多
关键词 Singular complex networks SYNCHRONIZATION Lyapunov-krasovski method markovian jump pinning control linear matrix inequality
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Cluster synchronization in community network with nonidentical nodes via intermittent pinning control
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作者 甘璐伊宁 吴召艳 弓晓利 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第4期100-105,共6页
In this paper, cluster synchronization in community network with nonidentical nodes is investigated. By combining intermittency with a pinning control scheme, some effective controllers are designed. In the control sc... In this paper, cluster synchronization in community network with nonidentical nodes is investigated. By combining intermittency with a pinning control scheme, some effective controllers are designed. In the control scheme, only one node in each community is controlled and coupling weights of a spanning tree in each community are enhanced. Based on the Lyapunov function method and mathematical analysis technique, two results for achieving cluster synchronization are obtained. Noticeably, by introducing an adaptive strategy, some universal adaptive intermittent pinning controllers are designed for different networks. Finally, two numerical simulations are performed to verify the correctness of the derived results. 展开更多
关键词 cluster synchronization community network intermittent pinning control
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Exponential synchronization of coupled memristive neural networks via pinning control
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作者 王冠 沈轶 尹泉 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第5期203-212,共10页
This paper is concerned with the exponential synchronization problem of coupled memristive neural networks. In contrast to general neural networks, memristive neural networks exhibit state-dependent switching behavior... This paper is concerned with the exponential synchronization problem of coupled memristive neural networks. In contrast to general neural networks, memristive neural networks exhibit state-dependent switching behaviors due to the physical properties of memristors. Under a mild topology condition, it is proved that a small fraction of controlled sub- systems can efficiently synchronize the coupled systems. The pinned subsystems are identified via a search algorithm. Moreover, the information exchange network needs not to be undirected or strongly connected. Finally, two numerical simulations are performed to verify the usefulness and effectiveness of our results. 展开更多
关键词 SYNCHRONIZATION MEMRISTOR coupled neural networks pinning control
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Novel pinning control strategies for synchronisation of complex networks with nonlinear coupling dynamics
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作者 刘兆冰 张化光 孙秋野 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第9期250-260,共11页
This paper considers the global stability of controlling an uncertain complex network to a homogeneous trajectory of the uncoupled system by a local pinning control strategy. Several sufficient conditions are derived ... This paper considers the global stability of controlling an uncertain complex network to a homogeneous trajectory of the uncoupled system by a local pinning control strategy. Several sufficient conditions are derived to guarantee the network synchronisation by investigating the relationship among pinning synchronisation, network topology, and coupling strength. Also, some fundamental and yet challenging problems in the pinning control of complex networks are discussed: (1) what nodes should be selected as pinned candidates? (2) How many nodes are needed to be pinned for a fixed coupling strength? Furthermore, an adaptive pinning control scheme is developed. In order to achieve synchronisation of an uncertain complex network, the adaptive tuning strategy of either the coupling strength or the control gain is utilised. As an illustrative example, a network with the Lorenz system as node self-dynamics is simulated to verify the efficacy of theoretical results. 展开更多
关键词 uncertain complex network pinning control synchronisation adaptive tuning
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Pinning control of complex Lur’e networks
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作者 张庆振 李忠奎 《Chinese Physics B》 SCIE EI CAS CSCD 2009年第6期2176-2183,共8页
This paper addresses the control problem of a class of complex dynamical networks with each node being a Lur'e system whose nonlinearity satisfies a sector condition, by applying local feedback injections to a small ... This paper addresses the control problem of a class of complex dynamical networks with each node being a Lur'e system whose nonlinearity satisfies a sector condition, by applying local feedback injections to a small fraction of the nodes. The pinning control problem is reformulated in the framework of the absolute stability theory. It is shown that the global stability of the controlled network can be reduced to the test of a set of linear matrix inequalities, which in turn guarantee the absolute stability of the corresponding Lur'e systems whose dimensions are the same as that of a single node. A circle-type criterion in the frequency domain is further presented for checking the stability of the controlled network graphically. Finally, a network of Chua's oscillators is provided as a simulation example to illustrate the effectiveness of the theoretical results. 展开更多
关键词 complex dynamical network Lur'e system pinning control linear matrix inequality
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Pinning consensus analysis of multi-agent networks with arbitrary topology 被引量:1
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作者 纪良浩 廖晓峰 陈欣 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第9期183-189,共7页
In this paper the pinning consensus of multi-agent networks with arbitrary topology is investigated. Based on the properties of M-matrix, some criteria of pinning consensus are established for the continuous multi-age... In this paper the pinning consensus of multi-agent networks with arbitrary topology is investigated. Based on the properties of M-matrix, some criteria of pinning consensus are established for the continuous multi-agent network and the results show that the pinning consensus of the dynamical system depends on the smallest real part of the eigenvalue of the matrix which is composed of the Laplacian matrix of the multi-agent network and the pinning control gains. Meanwhile, the relevant work for the discrete-time system is studied and the corresponding criterion is also obtained. Particularly, the fundamental problem of pinning consensus, that is, what kind of node should be pinned, is investigated and the positive answers to this question are presented. Finally, the correctness of our theoretical findings is demonstrated by some numerical simulated examples. 展开更多
关键词 MULTI-AGENT pinning control CONSENSUS SYNCHRONIZATION
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Consensus of multiagent systems based on disturbance observer 被引量:1
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作者 Hongyong YANG 1 , Fucai WANG 2 , Zhenxing ZHANG 3 , Guangdeng ZONG 4 (1.School of Information Science and Engineering, Ludong University, Yantai Shandong 264025, China 2.School of Electronic and Electrical Engineering, Ludong University, Yantai Shandong 264025, China +1 位作者 3.School of Automation, Southeast University, Nanjing Jiangsu 210096, China 4.Institute of Automation, Qufu Normal University, Qufu Shandong 273165, China) 《控制理论与应用(英文版)》 EI 2010年第2期145-150,共6页
The objectives of this work are the development and design of disturbance observers (DO’s) for a team of agents that accomplish consensus on agents’ states in the presence of exogenous disturbances. A pinning contro... The objectives of this work are the development and design of disturbance observers (DO’s) for a team of agents that accomplish consensus on agents’ states in the presence of exogenous disturbances. A pinning control strategy is designed for a part of agents of the multiagent systems without disturbances, and this pinning control can bring multiple agents’ states to reaching an expected consensus value. Under the effect of the disturbances, nonlinear disturbance observers are developed for disturbances generated by an exogenous system to estimate the disturbances. Asymptotical consensus of the multiagent systems with disturbances under the composite controller can be achieved. Finally, by applying an example of multiagent systems with switching topologies and exogenous disturbances, the design of the parameters of DO’s are illuminated. 展开更多
关键词 Multiagent systems Disturbance observer Pinning control CONSENSUS
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Pinning synchronization of time-varying delay coupled complex networks with time-varying delayed dynamical nodes 被引量:1
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作者 王树国 姚洪兴 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第5期119-125,共7页
This paper deals with the pinning synchronization of nonlinearly coupled complex networks with time-varying coupling delays and time-varying delays in the dynamical nodes.We control a part of the nodes of the complex ... This paper deals with the pinning synchronization of nonlinearly coupled complex networks with time-varying coupling delays and time-varying delays in the dynamical nodes.We control a part of the nodes of the complex networks by using adaptive feedback controllers and adjusting the time-varying coupling strengths.Based on the Lyapunov-Krasovskii stability theory for functional differential equations and a linear matrix inequality(LMI),some sufficient conditions for the synchronization are derived.A numerical simulation example is also provided to verify the correctness and the effectiveness of the proposed scheme. 展开更多
关键词 complex networks adaptive feedback controllers time-varying delays pinning controllers
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Observer-Based Intra-Cluster Lag Consensus of Multi-Agent Systems via Intermittent Adaptive Pinning Control
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作者 ZHANG Yunlong WEN Guoguang +2 位作者 RAHMANI Ahmed PENG Zhaoxia WEN Shiping 《Journal of Systems Science & Complexity》 SCIE EI CSCD 2023年第5期1809-1829,共21页
The intra-cluster lag consensus means that the agents in the same cluster can achieve lag consensus asymptotically while the agents in different clusters can achieve different consensus.In this paper,the authors inves... The intra-cluster lag consensus means that the agents in the same cluster can achieve lag consensus asymptotically while the agents in different clusters can achieve different consensus.In this paper,the authors investigate the observer-based intra-cluster lag consensus problems of multi-agent systems(MASs)with general linear dynamics and nonlinear dynamics via intermittent adaptive pinning control.The interaction network is considered to be weakly connected,i.e.,it is not necessary to be strongly connected,in-degree balanced or contain a directed spanning tree.To realise the intra-cluster lag consensus,a class of observers is designed to estimate the states of followers.Then a class of observer-based intermittent adaptive pinning control protocols is proposed according to the difference that the agents receive information source.Moreover,the pinning gains are designed to be intermittent adaptive and have an exponential convergence rate,which will effectively reduce communication costs,avoid the pinning gains being larger than those needed in real applications and guarantee the pinning gains quickly converge to steady value.Correspondingly,some sufficient consensus criteria are derived and rigorous proofs are given based on matrix theory and Lyapunov stability theory.Finally,the effectiveness for the proposed intermittent adaptive pinning control strategy is validated by a numerical simulation. 展开更多
关键词 Lag consensus multi-agent systems intermittent adaptive pinning control state observer
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Selecting pinning nodes to control complex networked systems 被引量:4
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作者 CHENG ZunShui XIN YouMing +2 位作者 CAO JinDe YU XingHuo LU GuoPing 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2018年第10期1537-1545,共9页
One of the fundamental problems in pinning control of complex networks is selecting appropriate pinning nodes, such that the whole system is controlled. This is particularly useful for complex networks with huge numbe... One of the fundamental problems in pinning control of complex networks is selecting appropriate pinning nodes, such that the whole system is controlled. This is particularly useful for complex networks with huge numbers of nodes. Recent research has yielded several pinning node selection strategies, which may be efficient. However, selecting a set of pinning nodes and identifying the nodes that should be selected first remain challenging problems. In this paper, we present a network control strategy based on left Perron vector. For directed networks where nodes have the same in-and out-degrees, there has so far been no effective pinning node selection strategy, but our method can find suitable nodes. Likewise, our method also performs well for undirected networks where the nodes have the same degree. In addition, we can derive the minimum set of pinning nodes and the order in which they should be selected for given coupling strengths. Our proofs of these results depend on the properties of non-negative matrices and M-matrices. Several examples show that this strategy can effectively select appropriate pinning nodes, and that it can achieve better results for both directed and undirected networks. 展开更多
关键词 complex network pinning control Perron root left Perron vector M-MATRICES
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Synchronization of Complex Networks with Coupling Delays via Adaptive Pinning Intermittent Control 被引量:6
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作者 Hai-Yi Sun Ning Li +1 位作者 De-Ping Zhao Qing-Ling Zhang 《International Journal of Automation and computing》 EI CSCD 2013年第4期312-318,共7页
The problem of exponential synchronization for a class of general complex dynamical networks with nonlinear coupling delays by adaptive pinning periodically intermittent control is considered in this paper. We use the... The problem of exponential synchronization for a class of general complex dynamical networks with nonlinear coupling delays by adaptive pinning periodically intermittent control is considered in this paper. We use the methods of the adaptive control, pinning control and periodically intermittent control. Based on the piecewise Lyapunov stability theory, some less conservative criteria are derived for the global exponential synchronization of the complex dynamical networks with coupling delays. And several corresponding adaptive pinning feedback synchronization controllers are designed. These controllers have strong robustness against the coupling strength and topological structure of the network. Using the delayed nonlinear system as the nodes of the networks, a numerical example of the complex dynamical networks with nonlinear coupling delays is given to demonstrate the effectiveness of the control strategy. 展开更多
关键词 Complex networks exponential synchronization DELAY adaptive pinning intermittent control piecewise Lyapunov stability
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