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Sliding-mode controller for a step up-down battery charger with a single current sensor

Villegas Ceballos, Juan PabloRamos-Paja, Carlos AndresHenao-Bravo, Elkin Edilberto
International Journal of Electrical and Computer Engineering (IJECE) (Sinta 1)Vol. 0 No. 01 April 2022
DOI10.11591/ijece.v12i2.pp1251-1264

Abstrak

This paper proposes a battery charger solution based on the Zeta DC/DC converter to provide a general interface between batteries and microgrid direct current (DC) buses. This solution enables to interface batteries and DC buses with voltage conversion ratios lower, equal, and higher than one using the same components and without redesigning the control system, thus ensuring global stability. The converter controller is designed to require only the measurement of a single inductor current, instead of both inductors currents, without reducing the system flexibility and stability. The controller stability is demonstrated using the sliding-mode theory, and a design procedure for the parameters is developed to ensure a desired bus performance. Finally, simulations and experiments validate the performance of the proposed solution under realistic operation conditions.

Kata Kunci

ElectronicsElectrical (Power)Modern Controlbattery chargerbus voltage regulationDC/DC convertersliding-mode control

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Sliding-mode controller for a step up-down battery charger with a single current sensor | International Journal of Electrical and Computer Engineering (IJECE) | Publiora