[3] Arai, T., Pagello, E., Parker, L.E.:
Guest editorial Advances in multi-robot systems. IEEE Trans. Robotics Automat. 18 (2002), 655-661.
DOI 10.1109/tra.2002.806024
[4] Ge, X., Han, Q.-L., Wang, Z.:
A threshold-parameter-dependent approach to designing distributed event-triggered $H_\infty$ consensus filters over sensor networks. IEEE Trans. Cybernetics 49 (2019), 1148-1159.
DOI 10.1109/tcyb.2017.2789296
[5] Guan, Y., Ge, X.:
Distributed attack detection and secure estimation of networked cyber-physical systems against false data injection attacks and jamming attacks. IEEE Trans. Signal Inform. Process. Networks 4 (2018), 48-59.
DOI 10.1109/tcyb.2017.2789296 |
MR 3769407
[7] Ding, L., Han, Q.-L., Zhang, X.-M.:
Distributed secondary control for active power sharing and frequency regulation in islanded microgrids using an event-triggered communication mechanism. IEEE Trans. Industr. Inform. 15 (2019), 3910-3922.
DOI 10.1109/tii.2018.2884494
[8] Ding, D., Han, Q.-L., Wang, Z., Ge, X.:
A survey on model-based distributed control and filtering for industrial cyber-physical systems. IEEE Trans. Industr. Informatics 15 (2019), 2483-2499.
DOI 10.1109/tii.2019.2905295
[9] Yang, H., Han, Q.-L., Ge, X., al., et:
Fault tolerant cooperative control of multi-agent systems: A survey of trends and methodologies. IEEE Transactions on Industrial Inform. 16 (2020), 4-17.
DOI 10.1109/tii.2019.2945004
[11] Su, Y., Huang, J.:
Cooperative output regulation with application to multi-agent consensus under switching network. IEEE Trans. Cybernetics 42 (2012), 864-875.
DOI 10.1109/tsmcb.2011.2179981
[12] Ge, X., Han, Q.-L.:
Consensus of multiagent systems subject to partially accessible and overlapping Markovian network topologies. IEEE Trans. Cybernetics 47 (2017), 1807-1819.
DOI 10.1109/tcyb.2016.2570860
[14] Li, Z., Chen, M. Z., Ding, Z.:
Fully distributed adaptive controllers for cooperative output regulation of heterogeneous linear multi-agent systems with directed graphs. arXiv preprint arXiv:1411.7125 54 (2014).
MR 3483682
[15] Cai, H., Huang, J.:
Cooperative output regulation with application to multi-agent consensus under switching network. IEEE Trans. Automat. Control 61 (2017), 3152-3157.
DOI 10.1109/tac.2014.2368231
[16] Cai, H., Lewis, F. L., Hu, G., Huang, J.:
The adaptive distributed observer approach to the cooperative output regulation of linear multi-agent systems. Automatica 75 (2017), 299-305.
DOI 10.1016/j.automatica.2016.09.038 |
MR 3582184
[17] Liu, W., Huang, J.:
Adaptive leader-following consensus for a class of higher-order nonlinear multi-agent systems with directed switching networks. Automatica 75 (2017), 84-92.
DOI 10.1016/j.automatica.2017.02.010 |
MR 3627969
[18] Qian, Y., Liu, L., Feng, G.: Distributed Dynamic Event-Triggered Control for Cooperative Output Regulation of Linear Multiagent Systems. IEEE Trans. Cybernetics (2019), 1-10.
[19] Zhang, X.-M., Han, Q.-L., Ge, X., al., et:
Networked control systems: A survey of trends and techniques. IEEE/CAA J. Automat. Sinica 7 (2020), 1-17.
DOI 10.1109/jas.2019.1911651 |
MR 3841465
[20] Ding, L., Han, Q.-L., Ge, X., Zhang, X.-M.:
An overview of recent advances in event-triggered consensus of multiagent systems. IEEE transactions on cybernetics 48 (2017), 1110-1123.
DOI 10.1109/tcyb.2017.2771560
[21] Dimarogonas, D. V., Frazzoli, E., Johansson, K. H.:
Distributed event-triggered control for multi-agent systems. IEEE Trans. Automat. Control 57 (2011), 1291-1297.
DOI 10.1109/tac.2011.2174666 |
MR 2923892
[24] Ge, X., Han, Q.-L., Yang, F.:
Event-based set-membership leader-following consensus of networked multi-agent systems subject to limited communication resources and unknown-but-bounded noise. IEEE Trans. Industr. Electron. 64 (2016), 5045-5054.
DOI 10.1109/tie.2016.2613929
[27] Ge, X., Han, Q.-L., Zhang, X.-M., Ding, L., F.Yang:
Distributed event-triggered estimation over sensor networks: A survey. IEEE Trans. Cybernetics 50 (2019), 3, 1306-1320.
DOI 10.1109/tcyb.2019.2917179
[28] Hu, W., Liu, L.:
Cooperative output regulation of heterogeneous linear multi-agent systems by event-triggered control. IEEE Trans. Cybernet. 47 (2016), 105-116.
DOI 10.1109/tcyb.2015.2508561
[30] Zou, W., Xiang, Z.:
Event-triggered distributed containment control of heterogeneous linear multi-agent systems by an output regulation approach. Int. J. Systems Sci. 48 (2017), 2041-2054.
DOI 10.1080/00207721.2017.1309595 |
MR 3656168
[31] Ma, Y., Yajing, Zhao, J.:
Distributed integral-based event-triggered scheme for cooperative output regulation of switched multi-agent systems. Inform. Sci. 457 (2018), 208-221.
DOI 10.1016/j.ins.2018.02.021 |
MR 3807038
[32] Yang, R., Zhang, H., Feng, G., Yan, H.:
Distributed event-triggered adaptive control for cooperative output regulation of heterogeneous multiagent systems under switching topology. IEEE Trans. Neural Networks Learning Systems 29 (2017), 4347-4358.
DOI 10.1109/tnnls.2017.2762343
[33] Liu, W., Huang, J.:
Event-triggered global robust output regulation for a class of nonlinear systems. IEEE Trans. Automat. Control 62 (2017), 5923-5930.
DOI 10.1109/tac.2017.2700384 |
MR 3730973
[34] Liu, W., Huang, J.:
Cooperative global robust output regulation for a class of nonlinear multi-agent systems by distributed event-triggered control. Automatica 93 (2018), 138-148.
DOI 10.1016/j.automatica.2018.03.062 |
MR 3810901
[35] Yang, Q., Sun, J., Chen, J.:
Output Consensus for Heterogeneous Linear Multiagent Systems With a Predictive Event-Triggered Mechanism. IEEE Trans. Cybernet. (2019), 1-13.
DOI 10.1109/tcyb.2019.2895044
[36] Meng, X., Xie, L., Soh, Y.C.:
Event-triggered output regulation of heterogeneous multiagent networks. IEEE Trans. Automat. Control 63 (2018), 4429-4434.
DOI 10.1109/tac.2018.2823085 |
MR 3891474
[38] Hu, W., Liu, L., Feng, G.:
Cooperative output regulation of linear multi-agent systems by intermittent communication: A unified framework of time-and event-triggering strategies. IEEE Trans. Automat. Control 63 (2017), 548-555.
DOI 10.1109/tac.2017.2727821 |
MR 3758983
[40] Su, Y., Huang, J.:
Stability of a class of linear switching systems with applications to two consensus problems. IEEE Trans. Automat. Control 57 (2012), 1420-1430.
DOI 10.1109/tac.2011.2176391 |
MR 2926734