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AuthorAlassi, A.
AuthorHouchati, M.
AuthorMeskin, Nader
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/SGRE46976.2019.9020678
URIhttp://hdl.handle.net/10576/29785
AbstractConventional DC-DC converters are an industry standard in several fields such as in solar PV applications for maximum energy extraction. However, the inherent non-linearity in these conventional types (e.g., boost, buck and buck-boost) makes it necessary to develop robust control techniques that can maintain the desired system operation in the presence of system disturbances. Variable Space Structure (VSS) controllers are convenient for such systems as their switching nature matches the DC-DC converters operational principle, and the Sliding Mode Control (SMC) mechanism may be employed in this context. This paper proposes an adaptive SMC method for the fourth order SEPIC converter, based on altering the sliding surface dynamics to continuously adjust the gains and drive the system to slide along an adaptive sliding surface to achieve stable converter operation. The mathematical model of the fourth order SEPIC is derived and the proposed adaptive SMC approach is simulated in MATLAB/Simulink. It is shown that one can achieve enhanced performance compared to the conventional SMC methods in the presence of system disturbances. The same methodology employed to SEPIC can also be expanded to other converters.
Languageen
PublisherInstitute of Electrical and Electronics Engineers Inc.
SubjectControllers
Electric power transmission networks
Robust control
Sliding mode control
Smart power grids
Space applications
Space platforms
Adaptive gain
MATLAB /simulink
SEPIC
Sliding mode controller
Variable space
DC-DC converters
TitleRobust Sliding Mode Controller Design for DC-DC Converters with Adaptive Gains
TypeConference Paper


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