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Accelerated Model Predictive Control based on a Greedy Algorithm with Round-Robin Priority for N-level Single-Phase Flying Capacitor Converter in Solid-State Transformer

Authors
Park, Dong-HwanKim, Rae-Young
Issue Date
Jul-2023
Publisher
Institute of Electrical and Electronics Engineers Inc.
Keywords
Switches; Voltage control; FCC; Legged locomotion; Capacitors; Voltage; Predictive control; Finite-control-set model predictive control (FCS-MPC); flying capacitor converter (FCC); multilevel converter; solid-state transformer (SST)
Citation
IEEE Transactions on Industrial Electronics, v.70, no.7, pp.6735 - 6743
Indexed
SCIE
SCOPUS
Journal Title
IEEE Transactions on Industrial Electronics
Volume
70
Number
7
Start Page
6735
End Page
6743
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/191761
DOI
10.1109/TIE.2022.3204862
ISSN
0278-0046
Abstract
This paper presents a control method for reducing the execution time based on model predictive control in a grid-connected single-phase N-level flying capacitor converter (FCC). The proposed method controls the grid current and flying capacitor voltage through two layers with a hierarchical structure finite-control-set model predictive control (FCS-MPC). In particular, unlike conventional model predictive control, using the greedy algorithm, the number of switching combinations is reduced by segmenting power devices into groups and sequentially determining switching states. The execution time is shortened because the reduction in the number of switching combinations is diminished. Moreover, because the maximum number of switching states to be compared increases in linear proportion to the voltage level, the execution time does not increase significantly as the voltage level is increased. As a result, the switching frequency can be increased by increasing the sampling frequency, and the total harmonic distortion (THD) of the grid current can be reduced. Evaluation of the validity of the proposed method via an experiment on a scaled-down prototype of a single-phase 2 kW 7-level FCC is also detailed herein.
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COLLEGE OF ENGINEERING (MAJOR IN ELECTRICAL ENGINEERING)
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