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AuthorBaniamerian, Amir
AuthorMeskin, Nader
AuthorKhorasani, Khashayar
Available date2016-06-21T13:29:04Z
Publication Date2014
Publication Name2014 Proceedings of the American Control Conference
ResourceScopus
CitationA. Baniamerian, N. Meskin and K. Khorasani, "Fault detection and isolation of Fornasini-Marchesini 2D systems: A geometric approach," 2014 American Control Conference, Portland, OR, 2014, pp. 5527-5533.
ISSN0743-1619
URIhttp://dx.doi.org/10.1109/ACC.2014.6859030
URIhttp://hdl.handle.net/10576/4621
AbstractThe fault detection and isolation (FDI) problem for discrete-time two-dimensional (2D) systems represented by the Fornasini-Marchesini model II is investigated in this work. It is shown that the sufficient conditions for solvability of the FDI problem that we have developed recently for the Roesser model is also applicable to this class of 2D systems. In this paper, we are mainly concerned with the necessary conditions. Two sets of necessary conditions for the solvability of the FDI problem are derived. The first necessary condition involves a new set of invariant subspaces that has no one-dimensional (1D) equivalency. The second set which is consistent with its equivalent 1D case is derived, generically (from the algebraic geometry point of view). A numerical example is also provided to illustrate the application of the results.
SponsorNPRP grant No. 4-195-2-065 from the Qatar National Research Fund (a member of Qatar Foundation)
Languageen
PublisherIEEE
Subjectcomputability
discrete time systems
fault diagnosis
multidimensional systems
distributed parameter systems
TitleFault detection and isolation of Fornasini-Marchesini 2D systems: A geometric approach
TypeConference Paper
Pagination5527-5533


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