Optimal Common-Mode Voltage for Grid-Tied Photovoltaic Cascaded H-Bridge Inverters Under Severe Power Imbalances

Journal Article (2023)
Author(s)

Felipe Calderon Rivera (TU Delft - Electrical Engineering, Mathematics and Computer Science)

Alejandro Angulo (Universidad Técnica Federico Santa María)

Pablo Acuna (University of Talca)

Andres Mora (Universidad Técnica Federico Santa María)

Research Group
DC systems, Energy conversion & Storage
DOI related publication
https://doi.org/10.1109/TIE.2023.3337545 Final published version
More Info
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Publication Year
2023
Language
English
Research Group
DC systems, Energy conversion & Storage
Issue number
9
Volume number
71
Pages (from-to)
11366-11376
Downloads counter
89
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Abstract

This article deals with the control problem of injecting balanced grid currents from a grid-tied photovoltaic cascaded H-bridge (CHB) inverter under severe interphase power imbalances. Existing solutions are hindered by the additional harmonic content required at the inverter output voltages. Therefore, a mathematical formulation for which the solution has minimal harmonic content is proposed. The proposed solution, optimal common-mode voltage (OCMV), has an analytical form that allows deducing and analyzing the CHB operating area. The real-time implementation of the OCMV requires solving a nonlinear two-variables system; thus, an iterative and distributed algorithm is designed. By doing so, the proposed OCMV can be fully formulated and implemented using a real-time control platform. The experimental validation was carried out in a scale-down 3 kW grid-tied seven-level CHB inverter governed by phase-shifted model predictive control. The laboratory results show that the proposed OCMV allows obtaining symmetrical grid currents while maintaining low-distorted inverter output voltages.

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