This paper proposes a new droop coefficient design method with the aim of improving the power-sharing accuracy among the converters in a multi-terminal dc (MTDC) system. The proposed droop coefficient design method works by adjusting the droop coefficient and can realize an arbitrary power-sharing ratio among all the converters in an MTDC system. This method does not rely on a communication network and therefore has the potential for higher reliability than the alternative methods. Mitigating the impact of the variation of dc line resistances on the power-sharing is discussed. Simulation of a four-terminal MTDC system is carried out by using PSCAD/EMTDC. The experimental results under a scaled-down four-terminal dc grid platform demo...
Dc systems are gaining popularity because of its high efficiency, high reliability and easy intercon...
In this study, direct current (DC) voltage margin control strategy and droop control strategy of vol...
Power systems have been developing over the past few decades, especially in terms of increasing effi...
This paper proposes a new droop coefficient design method with the aim of improving the power-sharin...
© 2013 IEEE. This paper proposes a new droop coefficient design method with the aim of improving the...
For droop control in voltage source converter based multi-terminal HVDC systems, the determination o...
With the advance of insulated gate bipolar transistor (IGBT) converters, Multi-Terminal DC (MTDC) b...
DC voltage stability and power balance are the key conditions for stable operation of DC transmissio...
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...
Because of the increasing penetration of intermittent green energy resources like offshore wind farm...
To solve the problem of large DC voltage deviation caused by the power fluctuations and poor power d...
One of the significant concerns in the MTDC systems is that voltage source converters (VSCs) do not ...
This paper proposes a generalized voltage droop (GVD) control strategy for control and power sharing...
Most of parallel-connected DC-DC converters schemes are based on a high-bandwidth communication net...
Dc systems are gaining popularity because of its high efficiency, high reliability and easy intercon...
In this study, direct current (DC) voltage margin control strategy and droop control strategy of vol...
Power systems have been developing over the past few decades, especially in terms of increasing effi...
This paper proposes a new droop coefficient design method with the aim of improving the power-sharin...
© 2013 IEEE. This paper proposes a new droop coefficient design method with the aim of improving the...
For droop control in voltage source converter based multi-terminal HVDC systems, the determination o...
With the advance of insulated gate bipolar transistor (IGBT) converters, Multi-Terminal DC (MTDC) b...
DC voltage stability and power balance are the key conditions for stable operation of DC transmissio...
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...
Because of the increasing penetration of intermittent green energy resources like offshore wind farm...
To solve the problem of large DC voltage deviation caused by the power fluctuations and poor power d...
One of the significant concerns in the MTDC systems is that voltage source converters (VSCs) do not ...
This paper proposes a generalized voltage droop (GVD) control strategy for control and power sharing...
Most of parallel-connected DC-DC converters schemes are based on a high-bandwidth communication net...
Dc systems are gaining popularity because of its high efficiency, high reliability and easy intercon...
In this study, direct current (DC) voltage margin control strategy and droop control strategy of vol...
Power systems have been developing over the past few decades, especially in terms of increasing effi...