Reduction of DC Capacitor Size in Three-Phase Input/Single-Phase Output Power Cells of Multi-Cell Converters through Resonant and Predictive Control: A Characterization of Its Impact on the Operating Region

Ramirez, Roberto O.; Baier, Carlos R.; Villarroel, Felipe; Espinosa, Eduardo; Arevalo, Mauricio; Espinoza, Jose R.

Abstract

Cascaded H-bridge drives require using a significant-size capacitor on each cell to deal with the oscillatory power generated by the H-bridge inverter in the DC-link. This results in a bulky cell with reduced reliability due to the circulating second harmonic current through the DC-link capacitors. In this article, a control strategy based on a finite control set model predictive control and a proportional-resonant controller is proposed to compensate for the oscillatory power required by the H-bridge inverter through the cell's input rectifier. With the proposed strategy, a DC-link second harmonic free operation is achieved, allowing for the possibility of reducing the capacitor size and, in consequence, the cell dimensions. The feasibility of the proposed control scheme is verified by experimental results in one cell of a cascade H-bridge inverter achieving an operation with a capacitance 141 times smaller than required by conventional control approaches for the same voltage ripple.

Más información

Título según WOS: ID WOS:001039858800001 Not found in local WOS DB
Título de la Revista: MATHEMATICS
Volumen: 11
Número: 14
Editorial: MDPI
Fecha de publicación: 2023
DOI:

10.3390/math11143038

Notas: ISI