2011•Unpublished venueRequires access

Analysis and design of a control approach for a boost converter with voltage multiplier cell

Fabrício Hoff Dupont, Cassiano Rech, Roger Gules, J.R. Pinheiro

Open publisher page 2 citations

Abstract

This paper presents the design of a control system for the boost converter with voltage multiplier cell. The adopted strategy employs an inner loop for the input current control and an outer loop for the output voltage regulation. As with the conventional boost converter, this strategy allows the improvement of the dynamic response of the converter and avoid the restrictions imposed by the non-minimum phase zero in the transfer function of the output voltage by the duty cycle. Simulation and experimental results are presented, showing the robustness of the proposed controller subject to load and input voltage disturbances. Besides, it is demonstrated that the controller designed with the aid of the reduced order model is capable to adequately control the converter with the inclusion of the resonant inductor.

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What this paper is about

This paper presents the design of a control system for the boost converter with voltage multiplier cell. The adopted strategy employs an inner loop for the input current control and an outer loop for the output voltage regulation. As with the conventional boost converter, this strategy allows the improvement of the dynamic response of the converter and avoid the restrictions imposed by the non-minimum phase zero in the transfer function of the output voltage by the duty cycle. Simulation and experimental results are presented, showing the robustness of the proposed controller subject to load and input voltage disturbances. Besides, it is demonstrated that the controller designed with the aid of the reduced order model is capable to adequately control the converter with the inclusion of the resonant inductor.

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Available abstract

This paper presents the design of a control system for the boost converter with voltage multiplier cell. The adopted strategy employs an inner loop for the input current control and an outer loop for the output voltage regulation. As with the conventional boost converter, this strategy allows the improvement of the dynamic response of the converter and avoid the restrictions imposed by the non-minimum phase zero in the transfer function of the output voltage by the duty cycle. Simulation and experimental results are presented, showing the robustness of the proposed controller subject to load and input voltage disturbances. Besides, it is demonstrated that the controller designed with the aid of the reduced order model is capable to adequately control the converter with the inclusion of the resonant inductor.

Key concepts: Control theory (sociology), Boost converter, Duty cycle, Voltage multiplier, Ćuk converter, Transfer function, Inductor, Robustness (evolution)

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