Hybrid MLI Topology Using Open-End Windings for Active Power Filter Applications

Гибридная топология многоуровневого инвертора с обмотками разомкнутого типа для применения в активных фильтрах мощности
Abdullah M. Noman, Abdulaziz Alkuhayli, Abdullrahman A. Al-Shamma’a, Khaled E. Addoweesh
2022-09-02

active power filtercascaded H-bridgehybrid multilevel inverteropen-end windingstotal harmonic distortion
Different multilevel converter topologies have been presented for achieving more output voltage steps, hence improving system performance and lowering costs. In this paper, a hybrid multilevel inverter (MLI) topology is proposed for active-power-filter applications. The proposed MLI is a combination of two standard topologies: the cascaded H-bridge and the three-phase cascaded voltage source inverter. This configuration enhances the voltage levels of the proposed MLI while using fewer switches than typical MLI topologies. The proposed MLI was developed in the MATLAB/Simulink environment, and a closed-loop control technique was used to achieve a unity power factor connection of the PV modules to the grid, as well as to compensate for harmonics caused by nonlinear loads. To demonstrate that the configuration was working correctly and that the control was precise, the proposed MLI was constructed in a laboratory. A MicroLabBox real-time controller handled data acquisition and switch gating. The proposed topology was experimentally connected to the grid and the MLI was experimentally used as an active power filter to compensate for the harmonics generated due to nonlinear loads. This control technique was able to generating a sinusoidal grid current that was in phase with the grid voltage, and the grid current’s total harmonic distortion was within acceptable limits. To validate the practicability of the proposed MLI, both simulation and experimental results are presented.
1
A closed-loop controller enables unity-power-factor connection of photovoltaic modules to the grid and compensates harmonics from nonlinear loads.
2
A hybrid multilevel inverter combines cascaded H-bridge and three-phase cascaded voltage-source inverter topologies for active power filter applications.
3
Simulation and laboratory experiments using a MicroLabBox controller validated grid-connected operation and switch-gating implementation.
4
The active power filter produced sinusoidal grid current in phase with grid voltage, with total harmonic distortion within acceptable limits.
5
The proposed configuration increases the number of output voltage levels while requiring fewer switches than typical multilevel inverter topologies.

The proposed hybrid multilevel inverter (MLI) based on open-end windings for grid-connected active power filtering of PV modules

The topology’s voltage-level enhancement and reduced switch count, together with its control performance in unity-power-factor grid connection and nonlinear-load harmonic compensation

Publication Details
Publication Date
2022-09-02
Journal
Publisher
ISSN
Cited by
8
Access Type
Author Information
Authors
Abdullah M. Noman
Abdulaziz Alkuhayli
Abdullrahman A. Al-Shamma’a
Khaled E. Addoweesh
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%