Four-Level Quasi-Nested Inverter Topology for Single-Phase Applications

Reusser, Carlos A.; Young, Hector

Abstract

In this paper, a novel four-level single-phase multilevel converter is introduced, consisting of six active switches arranged in a quasi-nested configuration. The proposed topology synthesizes its output voltage levels with respect to a floating neutral point, using four cascaded capacitors with identical voltage levels. The proposed converter contains a reduced number of components compared to the neutral point clamped (NPC) or active-NPC topologies (ANPC) for the same number of output voltage levels, since it does not require diode or active switch clamping to a neutral point. Moreover, no floating capacitors with asymmetric voltage levels are employed, thereby simplifying the capacitor voltage balancing. The switching operation principles, modulation technique and control scheme for supplying a single-phase resistive-inductive load are addressed in detail. The proposed four-level inverter allows generating an additional output voltage level with the same semiconductor count as conventional three-level inverters such as NPC and ANPC which allows a superior waveform quality, with a THDv reduction of 32.69% in comparison the clamped inverters. Experimental tests carried out in a laboratory-scale setup verify the feasibility of the proposed topology.

Más información

Título según WOS: Four-Level Quasi-Nested Inverter Topology for Single-Phase Applications
Título de la Revista: ELECTRONICS
Volumen: 10
Número: 3
Editorial: MDPI
Fecha de publicación: 2021
DOI:

10.3390/electronics10030233

Notas: ISI