The Modular multilevel matrix converter (M3C) is a promising topology for medium-voltage, high-power applications. Due to the modular structure, it is scalable, produces high quality output waveforms and can be fault tolerant. However, the M3C suffers from capacitor-voltage fluctuation if the output frequency is similar to the input frequency. This problem could limit the circuit’s application in the adjustable speed drives (ASD). This paper introduces a theoretical analysis in the phasor-domain to find the branch energy equilibrium point of the M3C when operating with equal input and output frequencies. On the basis of this equilibrium point, a branch current reallocation based energy balancing control method is proposed to equalize the en...
This paper presents a new control method for a Modular Multilevel Converter (MMC) fed by a push-pull...
This paper presents a novel cascaded vector control scheme for the Modular Multilevel Matrix Convert...
Modular multilevel converters achieve voltage scalability through the series connection of cells, ea...
Modular multilevel matrix converter (M3C) is a promising topology for medium-voltage high-power appl...
The modular multilevel matrix converter (M3C) is a promising topology for high-voltage high-power ap...
The modular multilevel matrix converter (M3C) is a power converter topology for ac to ac conversion ...
This paper presents a transformed arm power analysis of the Modular Multilevel Matrix Converter (M3C...
The Modular Multilevel Matrix Converter (M3C) is a Modular Multilevel Converter topology which is su...
The Modular Multilevel Matrix Converter is an AC-AC power converter proposed for high power applicat...
Voltage balancing between sub-module (SM) capacitors is essential for reliable operation of the modu...
The Modular Multilevel Matrix Converter (M3C) performs a direct three-phase AC to AC power conversio...
The Modular Multilevel Matrix Converter ( M 3 C ) is an ac-to-ac converter topology suitable for th...
This paper presents a modular multilevel converter (MMC) configuration that utilises energy exchange...
The Modular Multilevel Matrix Converter (M3C) is an AC to AC power converter composed of 9 arms that...
The Modular Multilevel Matrix Converter (M3C) is an emerging topology, especially suitable for ...
This paper presents a new control method for a Modular Multilevel Converter (MMC) fed by a push-pull...
This paper presents a novel cascaded vector control scheme for the Modular Multilevel Matrix Convert...
Modular multilevel converters achieve voltage scalability through the series connection of cells, ea...
Modular multilevel matrix converter (M3C) is a promising topology for medium-voltage high-power appl...
The modular multilevel matrix converter (M3C) is a promising topology for high-voltage high-power ap...
The modular multilevel matrix converter (M3C) is a power converter topology for ac to ac conversion ...
This paper presents a transformed arm power analysis of the Modular Multilevel Matrix Converter (M3C...
The Modular Multilevel Matrix Converter (M3C) is a Modular Multilevel Converter topology which is su...
The Modular Multilevel Matrix Converter is an AC-AC power converter proposed for high power applicat...
Voltage balancing between sub-module (SM) capacitors is essential for reliable operation of the modu...
The Modular Multilevel Matrix Converter (M3C) performs a direct three-phase AC to AC power conversio...
The Modular Multilevel Matrix Converter ( M 3 C ) is an ac-to-ac converter topology suitable for th...
This paper presents a modular multilevel converter (MMC) configuration that utilises energy exchange...
The Modular Multilevel Matrix Converter (M3C) is an AC to AC power converter composed of 9 arms that...
The Modular Multilevel Matrix Converter (M3C) is an emerging topology, especially suitable for ...
This paper presents a new control method for a Modular Multilevel Converter (MMC) fed by a push-pull...
This paper presents a novel cascaded vector control scheme for the Modular Multilevel Matrix Convert...
Modular multilevel converters achieve voltage scalability through the series connection of cells, ea...