Journal of Guangdong University of Technology ›› 2023, Vol. 40 ›› Issue (04): 94-101.doi: 10.12052/gdutxb.220114
• Comprehensive Studies • Previous Articles Next Articles
Wu Man, Zhang Li-li
CLC Number:
[1] LI C G, CHEN L N, AIHARA K. Synchronization of coupled nonidentical genetic oscillators[J]. Physical Biology, 2006, 3(1): 37-44. [2] BOCCALETTI S, LATORA V, MORENO Y, et al. Complex networks: structure and dynamics[J]. Physics Reports, 2006, 424(4/5): 175-308. [3] LIU H J, MA L F, WANG Z D, et al. An overview of stability analysis and state estimation for memristive neural networks[J]. Neurocomputing, 2020, 391: 1-12. [4] HONGSRI A, BOTMART T, WEERA W, et al. New delay-dependent synchronization criteria of complex dynamical networks with time-varying coupling delay based on sampled-data control via new integral inequality[J]. IEEE Access, 2021, 9: 64958-64971. [5] 来鑫, 乌建中, 张珍, 等. 多桩锤同步振动系统及同步控制策略研究[J]. 振动与冲击, 2012, 31(3): 147-152.LAI X, WU J Z, ZHANG Z, et al. Synchronous vibration system of multi-hammer and synchronous control strategy[J]. Journal of Vibration and Shock, 2012, 31(3): 147-152. [6] LYV L, LI C R, BAI S Y, et al. Synchronization of uncertain time-varying network based on sliding mode control technique[J]. Physica A:Statistical Mechanics and its Applications, 2017, 482: 808-817. [7] TONG L Y, LIANG J L, LIU Y. Generalized cluster synchronization of Boolean control networks with delays in both the states and the inputs[J]. Journal of the Franklin Institute, 2022, 359(1): 206-223. [8] HE X L, ZHANG H Y. Exponential synchronization of complex networks via feedback control and periodically intermittent noise[J]. Journal of the Franklin Institute, 2022, 359(8): 3614-3630. [9] ARELLANO-DELGADO A, LÓPEZ-GUTIÉRREZ R M, MÉNDEZ-RAMÍREZ R, et al. Dynamic coupling in small-world outer synchronization of chaotic networks[J]. Physica D:Nonlinear Phenomena, 2021, 423: 132928. [10] RUAN Z Y, LI Y Y, HU J H, et al. Finite-time synchronization of the drive-response networks by event-triggered aperiodic intermittent control[J]. Neurocomputing, 2022, 485: 89-102. [11] ZHAO Y S, LI X D, RAO R F. Synchronization of nonidentical complex dynamical networks with unknown disturbances via observer-based sliding mode control[J]. Neurocomputing, 2021, 454: 441-447. [12] LI Y, SONG F Y, LIU J L, et al. Decentralized event-triggered synchronization control for complex networks with nonperiodic DoS attacks[J]. International Journal of Robust and Nonlinear Control, 2022, 32(3): 1633-1653. [13] WANG Y, SONG H Y, CHEN G Y, et al. p components of cluster-lag consensus for second-order multiagent systems with adaptive controller on cooperative-competitive networks[J]. IEEE Transactions on Cybernetics, 2023, 53(5): 2852-2863. [14] LI F B, MA Z J, DUAN Q C. Clustering component synchronization in a class of unconnected networks via pinning control[J]. Physica A:Statistical Mechanics and its Applications, 2019, 525: 394-401. [15] XIAO F, WANG L, CHEN J. Partial state consensus for networks of second-order dynamic agents[J]. Systems & Control Letters, 2010, 59: 775-781. [16] LI F B, MA Z J, DUAN Q C. Partial component synchronization on chaotic networks[J]. Physica A:Statistical Mechanics and its Applications, 2019, 515: 707-714. [17] HU W J, ZHANG G, MA Z J, et al. Partial component consensus of discrete-time multiagent systems[J]. Mathematical Problems in Engineering, 2019, 2019: 4725418. [18] ZHANG Z C, MA Z J, WANG Y. Partial component consensus of leader-following multi-agent systems via intermittent pinning control[J]. Physica A:Statistical Mechanics and its Applications, 2019, 536: 122569. [19] 吴彬彬, 马忠军, 王毅. 领导-跟随多智能体系统的部分分量一致性[J]. 物理学报, 2017, 66(6): 5-11.WU B B, MA Z J, WANG Y. Partial component consensus of leader-following multi-agent systems[J]. Acta Physica Sinica, 2017, 66(6): 5-11. [20] ZHAO J, HILL D J, LIU T. Synchronization of dynamical networks with nonidentical nodes: criteria and control[J]. IEEE Transactions on Circuits and Systems I-Regular Papers, 2011, 58(3): 584-594. [21] LUO J, QU S C, XIONG Z L, et al. Observer-based finite-time modified projective synchronization of multiple uncertain chaotic systems and applications to secure[J]. IEEE Access, 2019, 7: 65527-65543. [22] XIAO F, GAN Q T. Finite-time synchronization of delayed complex dynamical network via pinning control[J]. Advances in Difference Equations, 2017, 2017(1): 345. [23] WANG J L, WANG Q, WU H N, et al. Finite-time output synchronization and H∞ output synchronization of coupled neural networks with multiple output couplings[J]. IEEE Transactions on Cybernetics, 2021, 51(12): 6041-6053. [24] SHI Y J, MA Y. Finite/fixed-time synchronization for complex networks via quantized adaptive control[J]. Electronic Research Archive, 2021, 29(2): 2047-2061. [25] ZHANG W L, YANG X S, YANG S J, et al. Finite-time and fixed-time bipartite synchronization of complex networks with signed graphs[J]. Mathematics and Computers in Simulation, 2021, 188: 319-329. [26] LI J R, JIANG H J, HU C, et al. Analysis and discontinuous control for finite-time synchronization of delayed complex dynamical networks[J]. Chaos, Solitons & Fractals, 2018, 114: 291-305. [27] DONG Y, CHEN J W, XIAN J G. Event-triggered control for finite-time lag synchronisation of time-delayed complex networks[J]. IET Control Theory and Applications, 2018, 12: 1916-1923. [28] TANG Y. Terminal sliding mode control for rigid robots[J]. Automatica, 1998, 34(1): 51-56. [29] HARDY G, LITTLEWOOD J, POLYA G. Inequalities[M]. Cambridge: Cambridge University Press, 1952. [30] WANG Y H, WANG W L, ZHANG L L. State synchronization of controlled nodes via the dynamics of links for complex dynamical networks[J]. Neurocomputing, 2020, 384: 225-230. [31] CHANG W D. Parameter identification of Rossler's chaotic system by an evolutionary algorithm[J]. Chaos, Solitons & Fractals, 2006, 29(5): 1047-1053. [32] ZHANG L L, LEI Y F, WANG Y H, et al. Matrix projective synchronization for time-varying disturbed networks with uncertain nonlinear structures and different dimensional nodes[J]. Neurocomputing, 2018, 311: 11-23. |
[1] | Gu Zhi-hua, Peng Shi-guo, Huang Yu-jia, Feng Wan-dian, Zeng Zi-xian. Leader-following Consensus of Nonlinear Multi-agent Systems with ROUs and RONs via Event-triggered Impulsive Control [J]. Journal of Guangdong University of Technology, 2023, 40(01): 50-55. |
[2] | Chen Ci, Xie Li-hua. A Data-Driven Prescribed Convergence Rate Design for Robust Tracking of Discrete-Time Systems [J]. Journal of Guangdong University of Technology, 2021, 38(06): 29-34. |
[3] | Zheng Zi-zhao, Peng Shi-guo, Fu Zhi-wen, Xu Yun-jian. Robust H∞ Synchronization for a Class of Complex Networks with Multi-weights under Impulsive Control [J]. Journal of Guangdong University of Technology, 2021, 38(03): 55-61. |
[4] | Zhang Hong-ye, Peng Shi-guo. A Research on the Consensus Problem of Multi-agent Systems with Random Time Delays Based on Model Reduction [J]. Journal of Guangdong University of Technology, 2019, 36(02): 86-90,96. |
[5] | Zhang Zhen-hua, Peng Shi-guo. Leader-Following Consensus of Second-Order Multi-Agent Systems with Switching Topology [J]. Journal of Guangdong University of Technology, 2018, 35(02): 75-80. |
[6] | Liu Yi, Zhang Yun. A Cooperative Optimization Algorithm Based on Adaptive Dynamic Programming [J]. Journal of Guangdong University of Technology, 2017, 34(06): 15-19. |
[7] | Liu Yi, Zhang Yun. Convergence Condition of Value-iteration Based Adaptive Dynamic Programming [J]. Journal of Guangdong University of Technology, 2017, 34(05): 10-14. |
[8] | Zhang Zhi-zhong, Peng Shi-guo. Input-to-state Stability for Stochastic Neural Networks with Time-Varying Delay [J]. Journal of Guangdong University of Technology, 2017, 34(04): 84-88. |
[9] | Luo He-fu, Peng Shi-guo. Distributed Formation Control of Multi-agent Systems with Coupling Time-varying Delays [J]. Journal of Guangdong University of Technology, 2017, 34(04): 89-96. |
[10] | Peng Shi-you, Peng Shi-guo. Passivity Analysis for Uncertain Neural Networks with Time-Varying Delay [J]. Journal of Guangdong University of Technology, 2017, 34(01): 78-83,89. |
[11] | Zeng Zi-xian, Peng Shi-guo, Huang Yu-jia, Gu Zhi-hua, Feng Wan-dian. Mean Square Quasi-consensus of Stochastic Multi-agent Systems Under Two Different Impulsive Deception Attacks [J]. Journal of Guangdong University of Technology, 2022, 39(01): 71-77. |
[12] | Yang Yi-zhuo, Dai Wei. A Multi-rate Model Predictive Control with Event-Triggered Mechanism for Industrial Processes [J]. Journal of Guangdong University of Technology, 2022, 39(05): 68-74. |
[13] | Qu Shen, Che Wei-wei. Distributed Model-Free Adaptive Control for Nonlinear Multi-Agent Systems with FDI Attacks [J]. Journal of Guangdong University of Technology, 2022, 39(05): 75-82. |
[14] | Zhou Lin-na, Jin Nan-nan, Wang Hai, Yang Chun-yu. Sliding Mode Coordinated Control and Experimental Study of Dual Permanent Magnet Synchronous Motor [J]. Journal of Guangdong University of Technology, 2022, 39(05): 83-92. |
[15] | Liu Jian-hua, Li Jia-hui, Liu Xiao-bin, Mu Shu-juan, Dong Hong-li. Event-Triggered Mechanism Based Non-Fragile Consensus Control for Multi-Rate Multi-Agent Systems [J]. Journal of Guangdong University of Technology, 2022, 39(05): 102-111. |
|