The paper presents a straightforward modelling approach to compute the power loss distribution in GaN HEMT based three phase and three level (3L) active neutral point clamped (ANPC) inverters, for different pulse width modulated techniques. Conduction and switching losses averaged over each PWM switching period are analytically computed by starting from the operating conditions of the AC load and data of GaN power devices. The accuracy of the proposed analytical approach is evaluated through a circuit based power electronics simulation tool, applied to different carrier-based PWM strategies.Comment: 10 pages, 13 figures, 24th European Conference on Power Electronics and Applications ( IEEE EPE 2022 ECCE Europe). This work has been carried...
Gallium nitride high electron mobility transistors (GaN HEMTs) have been commonly cited to significa...
Power semiconductor devices plays a major role in efficient power conversion. As we have Silicon (Si...
Power density and efficiency are amongst the design features that are becoming extremely important i...
GaN device as one potential power electronics device has been gained much attention recently. One of...
In this paper, an ultra-low inductance power cell is designed for a three-Level Active Neutral Point...
This paper presents the trade-off study of heat sink and output filter volume of a GaN HEMT based si...
This paper presents the trade-off study of heat sink and output filter volume of a GaN HEMT based si...
Power converters are found nearly everywhere electric power is used and are ubiquitous in renewable ...
In this paper, an ultra-low inductance power cell design for a 3L-ANPC based on 650 V GaN HEMT devic...
This thesis explores the techniques of characterization and applications of gallium nitride (GaN) se...
In the paper, an experimental evaluation of a low voltage Gallium Nitride (GaN) based inverter suita...
Defense is held on 21.9.2021 12:15 – 15:15 via remote technology, https://aalto.zoom.us/j/6262211...
grant No.SGS20/164/OHK3/3T/13, SGS21/116/OHK3/2T/13Current collapse in gallium nitrideb...
AC-AC converters have a wide range of use in industrial applications mostly with installed silicon s...
Throughout the history of power electronics, main driving force of developments is attribute to inno...
Gallium nitride high electron mobility transistors (GaN HEMTs) have been commonly cited to significa...
Power semiconductor devices plays a major role in efficient power conversion. As we have Silicon (Si...
Power density and efficiency are amongst the design features that are becoming extremely important i...
GaN device as one potential power electronics device has been gained much attention recently. One of...
In this paper, an ultra-low inductance power cell is designed for a three-Level Active Neutral Point...
This paper presents the trade-off study of heat sink and output filter volume of a GaN HEMT based si...
This paper presents the trade-off study of heat sink and output filter volume of a GaN HEMT based si...
Power converters are found nearly everywhere electric power is used and are ubiquitous in renewable ...
In this paper, an ultra-low inductance power cell design for a 3L-ANPC based on 650 V GaN HEMT devic...
This thesis explores the techniques of characterization and applications of gallium nitride (GaN) se...
In the paper, an experimental evaluation of a low voltage Gallium Nitride (GaN) based inverter suita...
Defense is held on 21.9.2021 12:15 – 15:15 via remote technology, https://aalto.zoom.us/j/6262211...
grant No.SGS20/164/OHK3/3T/13, SGS21/116/OHK3/2T/13Current collapse in gallium nitrideb...
AC-AC converters have a wide range of use in industrial applications mostly with installed silicon s...
Throughout the history of power electronics, main driving force of developments is attribute to inno...
Gallium nitride high electron mobility transistors (GaN HEMTs) have been commonly cited to significa...
Power semiconductor devices plays a major role in efficient power conversion. As we have Silicon (Si...
Power density and efficiency are amongst the design features that are becoming extremely important i...