In this paper, a methodology is presented to optimize the dc voltage droop settings in a multiterminal voltage-source converter high-voltage direct-current system with respect to the ac system stability. Implementing dc voltage droop control enables having multiple converters assisting the system in case of a converter outage. However, the abrupt power setpoint changes create additional stress in the ac system, especially when multiple converters are connected to the same interconnected ac system. This paper presents a methodology to determine optimizd converter droop settings in order to not compromise the ac system stability, thereby taking into account the adverse effect the droop control actions have on the interconnected ac system. Dev...
combined power flow analysis, DC droop control. In this paper, a combinational AC/DC power flow appr...
The concept of voltage source converter based multi-terminal high-voltage direct current (MTDC) grid...
This paper proposes an effective dc voltage and power-sharing control structure for multiterminal dc...
This paper presents a methodology to study the impact of different DC voltage droop settings on the ...
This paper analyzes the influence of the converter droop settings and the dc grid network topology o...
This paper focuses on the droop-based dc voltage control design for multiterminal VSC-HVDC grid syst...
For droop control in voltage source converter based multi-terminal HVDC systems, the determination o...
International audienceMulti-terminal DC systems must provide a high level of reliability and may hav...
The non-deterministic nature of power fluctuations in renewable energy sources impose challenges to ...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This paper presents an improved droop-base...
The more electric aircraft initative results in significant challenges in the design of aircraft ele...
Minimization of the total transmission loss of an interconnected AC-DC grid plays an important role ...
In this paper, droop control of inverters in a multi-terminal HVDC (MTDC) system is designed to achi...
In this paper, a voltage droop control tuning strategy for a four-terminal high-volt...
Abstract: This paper develops an effective control framework for DC voltage control and power-sharin...
combined power flow analysis, DC droop control. In this paper, a combinational AC/DC power flow appr...
The concept of voltage source converter based multi-terminal high-voltage direct current (MTDC) grid...
This paper proposes an effective dc voltage and power-sharing control structure for multiterminal dc...
This paper presents a methodology to study the impact of different DC voltage droop settings on the ...
This paper analyzes the influence of the converter droop settings and the dc grid network topology o...
This paper focuses on the droop-based dc voltage control design for multiterminal VSC-HVDC grid syst...
For droop control in voltage source converter based multi-terminal HVDC systems, the determination o...
International audienceMulti-terminal DC systems must provide a high level of reliability and may hav...
The non-deterministic nature of power fluctuations in renewable energy sources impose challenges to ...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This paper presents an improved droop-base...
The more electric aircraft initative results in significant challenges in the design of aircraft ele...
Minimization of the total transmission loss of an interconnected AC-DC grid plays an important role ...
In this paper, droop control of inverters in a multi-terminal HVDC (MTDC) system is designed to achi...
In this paper, a voltage droop control tuning strategy for a four-terminal high-volt...
Abstract: This paper develops an effective control framework for DC voltage control and power-sharin...
combined power flow analysis, DC droop control. In this paper, a combinational AC/DC power flow appr...
The concept of voltage source converter based multi-terminal high-voltage direct current (MTDC) grid...
This paper proposes an effective dc voltage and power-sharing control structure for multiterminal dc...