J Shanghai Jiaotong Univ Sci ›› 2024, Vol. 29 ›› Issue (4): 613-624.doi: 10.1007/s12204-024-2716-1
• Special Issue on Multi-Agent Collaborative Perception and Control • Previous Articles Next Articles
WU Zhihai∗ (吴治海), XIE Linbo (谢林柏)
Accepted:
2023-08-22
Online:
2024-07-14
Published:
2024-07-14
CLC Number:
WU Zhihai∗ (吴治海), XIE Linbo (谢林柏). Fault-Tolerant Dynamical Consensus of Double-Integrator Multi-Agent Systems in the Presence of Asynchronous Self-Sensing Function Failures[J]. J Shanghai Jiaotong Univ Sci, 2024, 29(4): 613-624.
[1] YANG Y Z, CHEN Y Y, YANG H Y. Robust flocking of multiple intelligent agents with multiple disturbances [J]. International Journal of Intelligent Systems, 2022, 37(10): 7571-7583. [2] DE S, SAHOO S R, WAHI P. A rendezvous strategy with R2 reachability for kinematic agents [J]. IEEE Transactions on Automatic Control, 2021, 66(1): 369-374. [3] ZHU G L, LIU K X, GU H B, et al. Observerbased event-triggered formation control of multi-agent systems with switching directed topologies [J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2022, 69(3): 1323-1332. [4] LIU C D, NIU B, LIU L, et al. Event-triggered adaptive bipartite asymptotic tracking control using intelligent technique for stochastic nonlinear multiagent systems [J]. IEEE Transactions on Artificial Intelligence, 2023, 4(6): 1616-1626. [5] YANG Y H, HU W F. Containment control of doubleintegrator multi-agent systems with time-varying delays [J]. IEEE Transactions on Network Science and Engineering, 2022, 9(2): 457-466. [6] YU X, SU R. Decentralized circular formation control of nonholonomic mobile robots under a directed sensorgraph [J]. IEEE Transactions on Automatic Control, 2023, 68(6): 3656-3663. [7] WANG F K, HUANG J L, LOW K H, et al. AGDS: Adaptive goal-directed strategy for swarm drones flying through unknown environments [J]. Complex & Intelligent Systems, 2023, 9(2): 2065-2080. [8] NURELLARI E, MCLERNON D, GHOGHO M. Distributed two-step quantized fusion rules via consensus algorithm for distributed detection in wireless sensor networks [J]. IEEE Transactions on Signal and Information Processing Over Networks, 2016, 2(3): 321-335. [9] SHI F R, TUO X G, RAN L L, et al. Fast convergence time synchronization in wireless sensor networks based on average consensus [J]. IEEE Transactions on Industrial Informatics, 2020, 16(2): 1120-1129. [10] ZHANG Y, RAHBARI-ASR N, DUAN J, et al. Day-ahead smart grid cooperative distributed energy scheduling with renewable and storage integration [J]. IEEE Transactions on Sustainable Energy, 2016, 7(4): 1739-1748. [11] WUTHISHUWONG C, TRAECHTLER A. Distributed control system architecture for balancing and stabilizing traffic in the network of multiple autonomous intersections using feedback consensus and route assignment method [J]. Complex & Intelligent Systems, 2020, 6(1): 165-187. [12] LI Y J, TAN C. A survey of the consensus for multiagent systems [J]. Systems Science & Control Engineering, 2019, 7(1): 468-482. [13] YANG H, HAN Q L, GE X H, et al. Fault-tolerant cooperative control of multiagent systems: A survey of trends and methodologies [J]. IEEE Transactions on Industrial Informatics, 2020, 16(1): 4-17. [14] ZHANG D, FENG G, SHI Y, et al. Physical safety and cyber security analysis of multi-agent systems: A survey of recent advances [J]. IEEE/CAA Journal of Automatica Sinica, 2021, 8(2): 319-333. [15] HE W L, XU W Y, GE X H, et al. Secure control of multiagent systems against malicious attacks: A brief survey [J]. IEEE Transactions on Industrial Informatics, 2022, 18(6): 3595-3608. [16] AMIRKHANI A, BARSHOOI A H. Consensus in multi-agent systems: A review [J]. Artificial Intelligence Review, 2022, 55(5): 3897-3935. [17] GAO C, HE X, DONG H L, et al. A survey on fault-tolerant consensus control of multi-agent systems: Trends, methodologies and prospects [J]. International Journal of Systems Science, 2022, 53(13): 2800-2813. [18] ISHII H, WANG Y, FENG S. An overview on multiagent consensus under adversarial attacks [J]. Annual Reviews in Control, 2022, 53: 252-272. [19] REN W, ATKINS E. Distributed multi-vehicle coordinated control via local information exchange [J]. International Journal of Robust and Nonlinear Control, 2007, 17(10/11): 1002-1033. [20] WU Z H, XIE L B. Fault-tolerant dynamical consensus of double-integrator multi-agent systems with partial agents subject to synchronous self-sensing function failure [C]//2022 6th International Conference on Automation, Control and Robots. Shanghai: IEEE, 2022: 137-141. [21] WU Z H, XIE L B. Fault-tolerant finite-time dynamical consensus of double-integrator multi-agent systems with partial agents subject to synchronous self-sensing function failure [J]. Chinese Physics B, 2022, 31(12): 128902. [22] CHEN C, LEWIS F L, XIE S L, et al. Resilient adaptive and H ∞ controls of multi-agent systems under sensor and actuator faults [J]. Automatica, 2019, 102: 19-26. [23] YAN B, WU C F, SHI P. Formation consensus for discrete-time heterogeneous multi-agent systems with link failures and actuator/sensor faults [J]. Journal of the Franklin Institute, 2019, 356(12): 6547-6570. [24] SUN Y R, XIA Y X, ZHANG J, et al. Adaptive faulttolerant output regulation of linear multi-agent systems with sensor faults [J]. IEEE Access, 2020, 8: 159440-159448. [25] CAO L, LI H Y, DONG G W, et al. Event-triggered control for multiagent systems with sensor faults and input saturation [J]. IEEE Transactions on Systems, Man, and Cybernetics: Systems, 2021, 51(6): 3855-3866. [26] DONG G W, LI X M, YAO D Y, et al. Command filtered fixed-time control for a class of multi-agent systems with sensor faults [J]. International Journal of Robust and Nonlinear Control, 2021, 31(18): 9588-9603. [27] SUNDARAM S, HADJICOSTIS C N. Distributed function calculation and consensus using linear iterative strategies [J]. IEEE Journal on Selected Areas in Communications, 2008, 26(4): 650-660. [28] SUNDARAM S, HADJICOSTIS C N. Distributed function calculation via linear iterative strategies in the presence of malicious agents [J]. IEEE Transactions on Automatic Control, 2011, 56(7): 1495-1508. [29] PASQUALETTI F, BICCHI A, BULLO F. Consensus computation in unreliable networks: A system theoretic approach [J]. IEEE Transactions on Automatic Control, 2012, 57(1): 90-104. [30] WU Y M, HE X X, LIU S, et al. Consensus of discretetime multi-agent systems with adversaries and time delays [J]. International Journal of General Systems, 2014, 43(3/4): 402-411. [31] JIN Z P, MURRAY R M. Multi-hop relay protocols for fast consensus seeking [C]//Proceedings of the 45th IEEE Conference on Decision and Control. San Diego: IEEE, 2006: 1001-1006. [32] YUAN D M, XU S Y, ZHAO H Y, et al. Accelerating distributed average consensus by exploring the information of second-order neighbors [J]. Physics Letters A, 2010, 374(24): 2438-2445. [33] LU J, TANG C Y. Controlled hopwise averaging and its convergence rate [J]. IEEE Transactions on Automatic Control, 2012, 57(4): 1005-1012. [34] RONG L N, XU S Y, ZHANG B Y, et al. Accelerating average consensus by using the information of secondorder neighbours with communication delays [J]. International Journal of Systems Science, 2013, 44(6): 1181-1188. [35] PAN H, NIAN X H, GUO L. Second-order consensus in multi-agent systems based on second-order neighbours’information [J]. International Journal of Systems Science, 2014, 45(5): 902-914. |
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