For Smart Transformers (ST), reliability is one of the major problems when compared to the traditional low-frequency transformers. Modular ST with advanced control algorithms could increase the reliability compared to the non-modular solutions. This could be achieved by distributing differently the power among the cells depending on their aging. This unequal power transfer is a challenge for Cascaded H-Bridge converters (CHB). ST based on a CHB rectifier with different capacitor voltage balancing schemes are analyzed in the paper. The goal is to evaluate the best scheme for unequal power transfer while maintaining the dc-link voltages constant. The paper focuses on validating the operating power unbalance limits of each cell of the modular ...
The application of the Smart Transformer (ST) in the electrical distribution system follows the tren...
In this work, the quadruple active bridge dc-dc converter (QAB) is proposed to be used as a building...
Increasing decentralized energy production challenges the distribution grid [1], [2], and, in many c...
Modular medium voltage power converters have gained increasing attention in context of Smart Transfo...
Smart Transformers (ST) are a potential solution for installing intelligent nodes in the electrical ...
The smart transformer is a solid state transformer with advanced control functionalities that can ef...
The Smart Transformer (ST), which is a power electronics-based transformer, represents an enabling t...
Modular power converters are expected to play a major role in medium- and high-voltage/power applica...
Smart Transformers (ST) are power electronic transformers capable of providing grid services and DC ...
A Smart Transformer (ST) is a power electronics based transformer developed for the electrical distr...
The use of a smart transformer-based electrical distribution could be an effective approach to reorg...
Smart transformer (ST) is a power electronic based transformer equipped with effective control and c...
While the use of power electronics based Smart Transformer (ST) is becoming a reality in traction ap...
The Smart Transformer (ST) has been proposed for increasing the hosting capacity of renewable energy...
In this paper, the quadruple active bridge (QAB) dc–dc converter is proposed to be used as a buildin...
The application of the Smart Transformer (ST) in the electrical distribution system follows the tren...
In this work, the quadruple active bridge dc-dc converter (QAB) is proposed to be used as a building...
Increasing decentralized energy production challenges the distribution grid [1], [2], and, in many c...
Modular medium voltage power converters have gained increasing attention in context of Smart Transfo...
Smart Transformers (ST) are a potential solution for installing intelligent nodes in the electrical ...
The smart transformer is a solid state transformer with advanced control functionalities that can ef...
The Smart Transformer (ST), which is a power electronics-based transformer, represents an enabling t...
Modular power converters are expected to play a major role in medium- and high-voltage/power applica...
Smart Transformers (ST) are power electronic transformers capable of providing grid services and DC ...
A Smart Transformer (ST) is a power electronics based transformer developed for the electrical distr...
The use of a smart transformer-based electrical distribution could be an effective approach to reorg...
Smart transformer (ST) is a power electronic based transformer equipped with effective control and c...
While the use of power electronics based Smart Transformer (ST) is becoming a reality in traction ap...
The Smart Transformer (ST) has been proposed for increasing the hosting capacity of renewable energy...
In this paper, the quadruple active bridge (QAB) dc–dc converter is proposed to be used as a buildin...
The application of the Smart Transformer (ST) in the electrical distribution system follows the tren...
In this work, the quadruple active bridge dc-dc converter (QAB) is proposed to be used as a building...
Increasing decentralized energy production challenges the distribution grid [1], [2], and, in many c...