Low voltage DC (LVDC) distribution systems offer improved efficiency and reliability in smart grids. A major challenge facing LVDC systems is DC-AC conversion. A study of an effective low voltage DC-AC converter is therefore presented. Modular Multilevel Converter (MMC) performance (in particular power loss) is compared with a conventional IGBT-based 2-level converter and its advantages highlighted. A phase-shifted sinusoidal PWM based individual voltage balancing strategy for the MMC is presented. A proportional-resonant controller is introduced to eliminate the 2nd harmonic circulating current in the H-bridge MMC converter
In recent years medium voltage direct-current (MVDC) grids have gained significant attention. This p...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
High Voltage DC (HVDC) grids provide an efficient solution for the transmission of bulk power over l...
Low voltage DC (LVDC) distribution systems offer improved efficiency and reliability in smart grids....
Trends toward large-scale integration and the high-power application of green energy resources neces...
A highly efficient DC-AC converter is key to the success of low-voltage DC (LVDC) distribution netwo...
This thesis develops a new class of modular multilevel dc/dc converters, termed the DC-MMC, that can...
New grid-connected systems have imposed additional requirements regarding reliability, power quality...
This dissertation proposes an isolated bi-directional soft-switching dc-dc converter for interconnec...
In a futuristic vision, deeply interconnected ac and dc networks are expected, which would be restru...
A new modular multilevel DC-DC converter (MMC) with high power density and simplified localized volt...
Conventional voltage balancers for the bipolar low-voltage dc (LVDC) distribution system have been c...
The most advanced power converter topology for high voltage direct current (HVDC) transmission is th...
The outstanding features of modular multilevel converters (MMC) have recently gained much attention ...
The increase in the energy demand has resulted in searching for new energy sources. Due to the incre...
In recent years medium voltage direct-current (MVDC) grids have gained significant attention. This p...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
High Voltage DC (HVDC) grids provide an efficient solution for the transmission of bulk power over l...
Low voltage DC (LVDC) distribution systems offer improved efficiency and reliability in smart grids....
Trends toward large-scale integration and the high-power application of green energy resources neces...
A highly efficient DC-AC converter is key to the success of low-voltage DC (LVDC) distribution netwo...
This thesis develops a new class of modular multilevel dc/dc converters, termed the DC-MMC, that can...
New grid-connected systems have imposed additional requirements regarding reliability, power quality...
This dissertation proposes an isolated bi-directional soft-switching dc-dc converter for interconnec...
In a futuristic vision, deeply interconnected ac and dc networks are expected, which would be restru...
A new modular multilevel DC-DC converter (MMC) with high power density and simplified localized volt...
Conventional voltage balancers for the bipolar low-voltage dc (LVDC) distribution system have been c...
The most advanced power converter topology for high voltage direct current (HVDC) transmission is th...
The outstanding features of modular multilevel converters (MMC) have recently gained much attention ...
The increase in the energy demand has resulted in searching for new energy sources. Due to the incre...
In recent years medium voltage direct-current (MVDC) grids have gained significant attention. This p...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
High Voltage DC (HVDC) grids provide an efficient solution for the transmission of bulk power over l...