A finite control set model predictive controller for single-phase transformerless T-type dynamic voltage restorer

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Date

2023

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Springer Science and Business Media Deutschland GmbH

Abstract

This paper presents a five-level T-type multilevel inverter (MLI) with a finite control set model predictive control (FCS-MPC) scheme for a single-phase transformerless dynamic voltage restorer (DVR). Typical two-level voltage source inverters are not suitable for high-power and medium-voltage applications due to high dv/dt, large size, and high cost of the filter, as well as high voltage stress on all switches. To overcome these issues, a reduced switch count T-type MLI-based transformerless DVR is proposed. The literature does not yet describe an FCS-MPC control scheme for transformerless T-type DVR. The FCS-MPC controller predicts the future of the trajectory of the controlled variables based on a prediction model. The optimal state is then selected using a cost function that is formed by combining predicted and reference variables. The proposed control technique minimizes the total harmonic distortion to a very low value compared to a linear PI controller. In addition, this control scheme is not dependent on a modulation scheme and linear control technique. The proposed system is validated by both simulation and experimental results. © 2023, The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.

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Keywords

Controllers, Cost functions, Electric inverters, Linear control systems, Power quality, Predictive control systems, Voltage regulators, Dynamic voltage restorers, Finite control set, Finite control set model predictive controller, Harmonic, Model predictive controllers, Multi Level Inverter (MLI), Set models, T-type multilevel inverte, Transformerless, Transformerless dynamic voltage restorer, Voltage sag/swell, Model predictive control

Citation

Electrical Engineering, 2023, 105, 2, pp. 1287-1297

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