Lyapunov-based model predictive control for stable operation of a 9-level crossover switches cell inverter in grid connection mode

Title Lyapunov-based model predictive control for stable operation of a 9-level crossover switches cell inverter in grid connection mode
Author Trabelsi, M., Makhamreh, Hamza, Alquennah, A. N., Vahedi, H.
Publication Date: 2023
Publication Place - IEEE
Subject Crossover switches cell converter, Grid-connection, Lyapunov-based control, Model predictive control, Multilevel inverters
Type Document
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 979-835033182-0
Record ID 1f62a19a-bd79-4c60-b098-6c29d229da69
Library Location Electrical & Electronics Engineering
Date 2023
Sample Text This study proposes the application of a Lyapunov-based Model Predictive Control (L-MPC) approach to a 9-level Crossover Switches Cell (CSC9) converter operating in grid connection mode. The proposed method utilizes the structure of the classical finite-control-set MPC (FCS-MPC) technique while integrating a cost function that requires no tuning. By deriving the cost function based on Lyapunov theory, the system stability is ensured. Notably, the suggested approach offers several advantages over traditional MPC controllers. Firstly, it eliminates the need for gain tuning, thereby simplifying the implementation process. Secondly, the proposed controller prioritizes stability as a key design aspect. The presented simulation results prove that the proposed controller effectively regulates the voltage of the DC capacitor around its desired value and feed a smooth sinusoidal current to the grid with low total harmonic distortion (THD) while operating at a unity power factor.
DOI 10.1109/IECON51785.2023.10312376
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Lyapunov-based model predictive control for stable operation of a 9-level crossover switches cell inverter in grid connection mode

Author Trabelsi, M., Makhamreh, Hamza, Alquennah, A. N., Vahedi, H.
Publication Date 2023
Publication Place - IEEE
Subject Crossover switches cell converter, Grid-connection, Lyapunov-based control, Model predictive control, Multilevel inverters
Type Document
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 979-835033182-0
Record ID 1f62a19a-bd79-4c60-b098-6c29d229da69
Library Location Electrical & Electronics Engineering
Date 2023
Sample Text This study proposes the application of a Lyapunov-based Model Predictive Control (L-MPC) approach to a 9-level Crossover Switches Cell (CSC9) converter operating in grid connection mode. The proposed method utilizes the structure of the classical finite-control-set MPC (FCS-MPC) technique while integrating a cost function that requires no tuning. By deriving the cost function based on Lyapunov theory, the system stability is ensured. Notably, the suggested approach offers several advantages over traditional MPC controllers. Firstly, it eliminates the need for gain tuning, thereby simplifying the implementation process. Secondly, the proposed controller prioritizes stability as a key design aspect. The presented simulation results prove that the proposed controller effectively regulates the voltage of the DC capacitor around its desired value and feed a smooth sinusoidal current to the grid with low total harmonic distortion (THD) while operating at a unity power factor.
DOI 10.1109/IECON51785.2023.10312376
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