Design and implementation of novel multilevel inverter with full DC-utilization

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Date

2025

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Taylor and Francis Ltd.

Abstract

This paper presents a novel single-source transformer-based nine-level (9 L) inverter configuration. The design incorporates a three-level neutral-point-clamped (3 L NPC) inverter, a 3-L full bridge, and a transformer to produce 9 L output voltage levels. In particular, one of the 2 L legs in the full bridge is common among the transformer and the load. The proposed structure minimises the components compared to existing transformer-based nine-level inverters. Thus, the suggested inverter volume, cost, and complexity are minimised. Furthermore, a pulse width modulation method has been developed to generate the necessary gating pulses for the proposed inverter. Additionally, a complete comparison study illustrates the enhanced performance of the suggested architecture. The validity of the suggested 9 L inverter is assessed by performing MATLAB simulations and using a scaled prototype. The results obtained from the simulations and experimental tests are then presented and analysed. A clear correlation was observed between the simulation and the hardware results. © 2024 Informa UK Limited, trading as Taylor & Francis Group.

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Keywords

Bridges, DC transformers, Electric inverters, MATLAB, Design and implementations, Full bridge, Inverte, Multi Level Inverter (MLI), Output voltages, PWM inverter, Single source, Three-level neutral point clamped, Transformer, Voltage levels, Pulse width modulation

Citation

International Journal of Electronics, 2025, 112, 6, pp. 1212-1231

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