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AuthorMola, M.
AuthorAfshar, A.
AuthorMeskin, Nader
AuthorKarrari, M.
Available date2022-04-14T08:45:40Z
Publication Date2019
Publication Name2nd International Conference on Smart Grid and Renewable Energy, SGRE 2019 - Proceedings
ResourceScopus
Identifierhttp://dx.doi.org/10.1109/SGRE46976.2019.9020684
URIhttp://hdl.handle.net/10576/29786
AbstractIn this paper, the problem of the fast fault detection of synchronous generators is addressed. Toward this goal, a multi-objective optimization problem formulation based on the l1/H /H - performance criteria and the regional pole placement constraint is presented and it is solved using linear matrix inequality (LMI) approach to obtain the parameters of the fault detection observer and the optimal amount of the performance indices. The convergence rate of the fault detection observer is improved with the proposed method which leads to fast fault detection in synchronous generators. The effectiveness of the proposed method is demonstrated by the numerical simulation with a 3 degree Heffron-Phillips model of the synchronous generator. 2019 IEEE.
Languageen
PublisherInstitute of Electrical and Electronics Engineers Inc.
SubjectElectric power transmission networks
Linear matrix inequalities
Multiobjective optimization
Numerical methods
Smart power grids
Synchronous generators
Convergence rates
Heffron Phillips model
Linear matrix inequality approach
Multi-objective optimization problem
Performance criterion
Performance indices
Regional pole placement
Fault detection
TitleFast Fault Detection of Synchronous Generators
TypeConference Paper


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