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Information Journal Paper

Title

FAULT DETECTION AND ISOLATION OF MULTI-AGENT SYSTEMS VIA COMPLEX LAPLACIAN

Pages

  95-101

Abstract

 This paper studies the problem of FAULT DETECTION AND ISOLATION (FDI) for MULTI-AGENT SYSTEMS (MAS) via COMPLEX LAPLACIAN subject to actuator faults. Using simple and linear interaction rules related to COMPLEX LAPLACIAN, a planar formation of agents in the plane is achieved. The communication network is a directed, and yet connected graph with a fixed topology. The loss of symmetry in the digraph Laplacian matrix is also considered. Both the partial actuator effectiveness and the actuator bias faults are taken into account. For this purpose, a virtual agent whose dynamics structure is identical to that of the leader agent is introduced to determine the center of the planar formation. The FDI scheme requires no additional fault isolation model which is an essential part in the traditional FDI scheme. Finally, numerical example results are presented to show the effectiveness of the proposed scheme.

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    APA: Copy

    GHASEMI, A., ASKARI MARNANI, J., & MENHAJ, M.B.. (2017). FAULT DETECTION AND ISOLATION OF MULTI-AGENT SYSTEMS VIA COMPLEX LAPLACIAN. AUT JOURNAL OF MODELING AND SIMULATION, 49(1), 95-101. SID. https://sid.ir/paper/352223/en

    Vancouver: Copy

    GHASEMI A., ASKARI MARNANI J., MENHAJ M.B.. FAULT DETECTION AND ISOLATION OF MULTI-AGENT SYSTEMS VIA COMPLEX LAPLACIAN. AUT JOURNAL OF MODELING AND SIMULATION[Internet]. 2017;49(1):95-101. Available from: https://sid.ir/paper/352223/en

    IEEE: Copy

    A. GHASEMI, J. ASKARI MARNANI, and M.B. MENHAJ, “FAULT DETECTION AND ISOLATION OF MULTI-AGENT SYSTEMS VIA COMPLEX LAPLACIAN,” AUT JOURNAL OF MODELING AND SIMULATION, vol. 49, no. 1, pp. 95–101, 2017, [Online]. Available: https://sid.ir/paper/352223/en

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