Suchergebnisse - "dynamic encoding–decoding scheme"

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    Alternate Title: Security and privacy protection in swarm intelligence systems: a review. (English)

    Autoren: 严, 宇萍 高, 婷 谢, 雨晗 et al.

    Quelle: Telecommunications Science; 2025, Vol. 41 Issue 4, p61-80, 20p

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    Autoren: Ma, Ji Yang, Bo Qiu, Jiayu et al.

    Dateibeschreibung: application/pdf

    Relation: mr:MR4757770; zbl:Zbl 07893455; reference:[1] Abdessameud, A., Tayebi, A.: Distributed output regulation of heterogeneous linear multi-agent systems with communication constraints.Automatica 91 (2018), 152-158. MR 3777600; reference:[2] Back, J., Kim, J.: Output feedback practical coordinated tracking of uncertain heterogeneous multi-agent systems under switching network topology.IEEE Trans. Autom. Control 62 (2017), 6399-6406. MR 3743519; reference:[3] Ceragioli, F., Persis, C. D., Frasca, P.: Discontinuities and hysteresis in quantized average consensus.Automatica 47 (2011), 1916-1928. MR 2886803; reference:[4] Chen, Chi-Tsong: Linear System Theory and Design.Oxford University Press, Inc., 1995.; reference:[5] Dimarogonas, D., Johansson, K.: Stability analysis for multi-agent systems using the incidence matrix: quantized communication and formation control.Automatica 46 (2010), 695-700. MR 2877129; reference:[6] Dong, S., Liu, L., Feng, G., Liu, M., Wu, Z.: Quantized fuzzy cooperative output regulation for heterogeneous nonlinear multiagent systems with directed fixed/switching topologies.IEEE T. Cybernetics 52 (2022), 12393-12402.; reference:[7] Dong, X., Yan, Z., Zhang, R., Zhong, Y.: Time-varying formation tracking for second-order multi-agent systems subjected to switching topologies with application to quadrotor formation flying.IEEE T. Ind. Electron. 64 (2017), 5014-5024.; reference:[8] Hong, Y., Wang, X., Jiang, Z.: Distributed output regulation of leader-follower multi-agent systems.Int. J. Robust. Nonlinear Control 23 (2013), 48-66. Zbl 1263.93007, MR 3008001; reference:[9] Huang, J.: Nonlinear output regulation: Theory and application.Soc. Ind. Appl. Math. (2004). MR 2308004; reference:[10] Huang, X., Dong, J.: Reliable leader-to-follower formation control of multiagent systems under communication quantization and attacks.IEEE T. Syst. Man CY-S 50 (2020), 89-99.; reference:[11] Lavaei, J., Murray, R. M: Quantized consensus by means of gossip algorithm.IEEE Trans. Automat. Control 57 (2012), 19-32. MR 2917645; reference:[12] Li, T., Fu, M., Xie, L., Zhang, J.: Distributed consensus with limited communication data rate.IEEE Trans. Autom. Control 56 (2011), 279-292. MR 2761096; reference:[13] Li, H., Liu, S., Soh, Y. C., Xie, L.: Event-triggered communication and data rate constraint for distributed optimization of multiagent systems.IEEE Trans. Syst. Man Cybern. Syst. 48 (2018), 1908-1919.; reference:[14] Li, D., Liu, Q., Wang, X., Yin, Z.: Quantized consensus over directed networks with switching topologies.Syst. Control Lett. 65 (2014), 13-22. MR 3168025; reference:[15] Liu, W., Huang, J.: Cooperative global robust output regulation for a class of nonlinear multi-agent systems with switching network.IEEE Trans. Autom. Control 60 (2015), 1963-1968. MR 3365087; reference:[16] Liu, S., Li, T., Xie, L., Fu, M., Zhang, J.: Continuous-time and sampleddata-based average consensus with logarithmic quantizers.Automatica 49 (2013), 3329-3336. MR 3115802; reference:[17] Lu, M., Liu, L.: Distributed feedforward approach to cooperative output regulation subject to communication delays and switching networks.IEEE Trans. Autom. Control 62 (2017), 1999-2005. MR 3636353; reference:[18] Ma, J., Yu, X., Liu, L., Ji, H., Feng, G.: Global cooperative output regulation of linear multiagent systems with limited bandwidth.IEEE Trans. Control Netw. Syst. 9 (2022), 1017-1028. MR 4483642; reference:[19] Meng, Y., Li, T., Zhang, J.: Coordination over multi-agent networks with unmeasurable states and finite-level quantization.IEEE Trans. Automat. Control 62 (2017), 4647-4653. MR 3691885; reference:[20] Meng, Z., Yang, T., Dimarogonas, D., Johansson, K.: Coordinated output regulation of heterogeneous linear systems under switching topologies.Automatica 53 (2015), 362-368. MR 3318610; reference:[21] Su, Y., Huang, J.: Cooperative output regulation of linear multi-agent systems by output feedback.Syst. Control Lett. 61 (2012), 1248-1253. MR 2998211; reference:[22] Su, Y., Huang, J.: Cooperative output regulation with application to multiagent consensus under switching network.IEEE T. Syst. Man CY-S, part B, Cybernetics 42 (2012), 864–875.; reference:[23] Tatikonda, S., Mitter, S., Sanjoy: Control over noisy channels.IEEE Trans. Autom. Control 49 (2004), 1196-1201. MR 2071953; reference:[24] Wang, X.: Distributed formation output regulation of switching heterogeneous multi-agent systems.Int. J. Syst. Sci. 44 (2013), 2004-2014. MR 3172758; reference:[25] Wang, X., Ni, W., Ma, Z.: Distributed event-triggered output regulation of multi-agent systems.Int. J. Control 88 (2015), 640-652. MR 3303730; reference:[26] Xu, D., Wang, X., Su, Y., Wang, D.: Formation control in dynamic positioning of multiple offshore vessels via cooperative robust output regulation.In: 2017 56th IEEE Conf. Decis. Control (CDC), Melbourne, IEEE (2017), pp. 4070-4075. MR 2991717; reference:[27] Yi, P., Hong, Y.: Quantized subgradient algorithm and data-rate analysis for distributed optimization.IEEE Trans. Control Netw. Syst. 1 (2014), 380-392. MR 3303147; reference:[28] You, K., Xie, L.: Network topology and communication data rate for consensusability of discrete-time multi-agent systems.IEEE Trans. Autom. Control 56 (2011), 2262-2275. MR 2884153; reference:[29] Zhang, Q., Zhang, J.: Quantized data-based distributed consensus under directed time-varying communication topology.SIAM J. Control Optim. 51 (2013), 332-352. MR 3032878; reference:[30] Zheng, M., Liu, C., Liu, F.: Average-consensus tracking of sensor network via distributed coordination control of heterogeneous multi-agent systems.IEEE Control Syst. Lett. 3 (2019), 132-137. MR 4208733

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    Autoren: Meng, Yang Li, Tao

    Quelle: 11th IEEE International Conference on Control & Automation (ICCA); 2014, p1186-1191, 6p

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