4.8 Article

Simplified Two-Stage Model Predictive Control for a Hybrid Multilevel Converter With Floating H-Bridge

期刊

IEEE TRANSACTIONS ON POWER ELECTRONICS
卷 36, 期 4, 页码 4839-4850

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TPEL.2020.3018956

关键词

Capacitors; Switches; Voltage control; Power electronics; Mathematical model; Predictive control; Silicon carbide; Active-neutral-point-clamped converter (ANPC); floating H-bridge; hybrid multilevel converter (HMC); model predictive control (MPC)

资金

  1. U.S. Department of Energy's Office of Energy Efficiency and Renewable Energy under Solar Energy Technologies Office [EE0008349]

向作者/读者索取更多资源

This article proposes a simplified two-stage model predictive control method for a hybrid multilevel converter with floating H-bridge, which can significantly reduce the computational burden and ensure the best current tracking performance.
This article proposes a simplified two-stage model predictive control (ST-MPC) for a hybrid multilevel converter, which is an active-neutral-point-clamped converter with floating H-bridge (ANPC-H). The objective of the first stage is to select the voltage vector that has the optimal current tracking performance by using a novel geometrical positioning approach in the complex plane. The second stage selects the best switching state among all the available switching states that belong to the same voltage vector obtained in the first stage, to balance dc capacitor voltages and reduce the common mode voltage. The proposed ST-MPC can dramatically reduce the computational burden and ensure the best current tracking by the two-stage structure, such that the execution time is much shorter compared with the conventional MPC. In addition, the geometrical positioning approach in the first stage is generic and can be applicable for any multilevel converters with N-level output; thus, this ST-MPC can be applied for both seven- and nine-level operation of the hybrid ANPC-H converter under different dc voltage ratios. Both simulation results and experimental results obtained on a silicon carbide hybrid ANPC-H converter prototype validate the feasibility and effectiveness of the proposed ST-MPC strategy.

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