Sequential Phase-Shifted Model Predictive Control for a Five-Level Flying Capacitor Converter

Ghias, Amer; Aguilera, Ricardo P.; Lezana, Pablo; Mcgrath, Brendan; Jayan, Vijesh; IEEE

Abstract

This paper extends previous work on the Sequential Phase-Shifted Model Predictive Control (SPS-MPC) strategy into a Single-Phase Five-Level Flying Capacitor Converter (SP-FL-FCC). The use of SPS-MPC in an FL-FCC is not as straightforward as it first seems. Therefore, a sequential average model based on more than one active control input is derived. The proposed SPS-MPC strategy achieves a fixed switching frequency, which is beneficial regarding of semiconductor loss distribution, and also to ensure that a high-bandwidth is achieved that compares favorably to the finite-control-set MPC case. Simulation results of the proposed SPS-MPC strategy validate the current and FC voltages tracking control during the transient and steady-state conditions at a fixed switching frequency.

Más información

Título según WOS: Sequential Phase-Shifted Model Predictive Control for a Five-Level Flying Capacitor Converter
Título de la Revista: 2020 IEEE INTERNATIONAL CONFERENCE ON INDUSTRIAL TECHNOLOGY (ICIT)
Editorial: IEEE
Fecha de publicación: 2019
Página de inicio: 533
Página final: 538
DOI:

10.1109/ICIT.2019.8755230

Notas: ISI