Weighting factor-free model predictive control for three-level buck converters

Title Weighting factor-free model predictive control for three-level buck converters
Author Makhamreh, Hamza, Dyab, Amer Mohammad Nayef
Publication Date: 2023
Publication Place - IEEE
Subject Controller performance, Finite control set, Model predictive control, Stability, Three level dc/dc converters
Type Document
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 2832-7667
Record ID f6602666-da6e-4651-b435-0710d05ae9c1
Library Location Electrical & Electronics Engineering
Date 2023
Sample Text In this paper, a Finite Control Set Model Predictive Control (FCS-MPC) algorithm is proposed. The cost function in this predictive control algorithm is designed to eliminate the dependency on the physical parameters of the circuit, which may have a high mismatch margin affecting the precision of the design. The algorithm is implemented for a three-level buck converter, and the simulation is compared to the classical FCS-MPC method. Compared to the classical MPC method, the proposed Lyapunov-based MPC method requires no gain tuning and has a simple design procedure while achieving comparable performance.
DOI 10.1109/GPECOM58364.2023.10175673
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Weighting factor-free model predictive control for three-level buck converters

Author Makhamreh, Hamza, Dyab, Amer Mohammad Nayef
Publication Date 2023
Publication Place - IEEE
Subject Controller performance, Finite control set, Model predictive control, Stability, Three level dc/dc converters
Type Document
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 2832-7667
Record ID f6602666-da6e-4651-b435-0710d05ae9c1
Library Location Electrical & Electronics Engineering
Date 2023
Sample Text In this paper, a Finite Control Set Model Predictive Control (FCS-MPC) algorithm is proposed. The cost function in this predictive control algorithm is designed to eliminate the dependency on the physical parameters of the circuit, which may have a high mismatch margin affecting the precision of the design. The algorithm is implemented for a three-level buck converter, and the simulation is compared to the classical FCS-MPC method. Compared to the classical MPC method, the proposed Lyapunov-based MPC method requires no gain tuning and has a simple design procedure while achieving comparable performance.
DOI 10.1109/GPECOM58364.2023.10175673
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