This paper develops an effective control framework for DC voltage control and power-sharing of multi-terminal DC (MTDC) grids based on an optimal power flow (OPF) procedure and the voltage-droop control. In the proposed approach, an OPF algorithm is executed at the secondary level to find optimal reference of DC voltages and active powers of all voltage-regulating converters. Then, the voltage droop characteristics of voltage-regulating converters, at the primary level, are tuned based on the OPF results such that the operating point of the MTDC grid lies on the voltage droop characteristics. Consequently, the optimally-tuned voltage droop controller leads to the optimal operation of the MTDC grid. In case of variation in load or generation...
This paper presents a two-stage algorithm to regulate the power flow among a Multi-Terminal DC (MTDC...
The electric networks of the future will make an extensive use of DC grids. Therefore, the control o...
High-power DC-DC converters are integrated into multi-terminal high-voltage DC (MTDC) networks, typi...
Abstract: This paper develops an effective control framework for DC voltage control and power-sharin...
This paper proposes an effective dc voltage and power-sharing control structure for multiterminal dc...
This paper proposes an effective dc voltage and power-sharing control structure for multiterminal dc...
This paper proposes a generalized voltage droop (GVD) control strategy for control and power sharing...
Minimization of the total transmission loss of an interconnected AC-DC grid plays an important role ...
Minimization of the total transmission loss of an interconnected AC-DC grid plays an important role ...
This paper proposes an efficient control framework that utilizes dc-dc converters to achieve flexibl...
Efficient and balanced power transfer with minimum transmission losses in Multi-Terminal High-Voltag...
This paper proposes an efficient control framework that utilizes dc-dc converters to achieve flexibl...
The concept of voltage source converter based multi-terminal high-voltage direct current (MTDC) grid...
The concept of voltage source converter based multi-terminal high-voltage direct current (MTDC) grid...
This paper proposes an efficient control framework that utilizes dc-dc converters to achieve flexibl...
This paper presents a two-stage algorithm to regulate the power flow among a Multi-Terminal DC (MTDC...
The electric networks of the future will make an extensive use of DC grids. Therefore, the control o...
High-power DC-DC converters are integrated into multi-terminal high-voltage DC (MTDC) networks, typi...
Abstract: This paper develops an effective control framework for DC voltage control and power-sharin...
This paper proposes an effective dc voltage and power-sharing control structure for multiterminal dc...
This paper proposes an effective dc voltage and power-sharing control structure for multiterminal dc...
This paper proposes a generalized voltage droop (GVD) control strategy for control and power sharing...
Minimization of the total transmission loss of an interconnected AC-DC grid plays an important role ...
Minimization of the total transmission loss of an interconnected AC-DC grid plays an important role ...
This paper proposes an efficient control framework that utilizes dc-dc converters to achieve flexibl...
Efficient and balanced power transfer with minimum transmission losses in Multi-Terminal High-Voltag...
This paper proposes an efficient control framework that utilizes dc-dc converters to achieve flexibl...
The concept of voltage source converter based multi-terminal high-voltage direct current (MTDC) grid...
The concept of voltage source converter based multi-terminal high-voltage direct current (MTDC) grid...
This paper proposes an efficient control framework that utilizes dc-dc converters to achieve flexibl...
This paper presents a two-stage algorithm to regulate the power flow among a Multi-Terminal DC (MTDC...
The electric networks of the future will make an extensive use of DC grids. Therefore, the control o...
High-power DC-DC converters are integrated into multi-terminal high-voltage DC (MTDC) networks, typi...