This paper proposed a novel control strategy based on a virtual resistance and a phase locked loop for parallel three-phase inverters. The proposed controller can overcome the drawbacks of the conventional droop control such as slow transient response, complex design, and limited stability margins. The load sharing capability can be also obtained under asymmetrical output impedances in which the conventional droop controller was not properly working. The proposed approach has been verified by means of simulations and experimental results in a laboratory-scale prototype
Conventional droop control is a basic control strategy for power sharing in islanded microgrid appli...
Stability in island microgrids is crucial for efficient power distribution among distributed generat...
An improved control strategy for grid-connected inverters within microgrids is presented in this pap...
A novel simple and effective autonomous current-sharing controller for parallel three-phase inverter...
A novel simple and effective autonomous currentsharing controller for parallel three-phase inverters...
This paper focuses on the islanded operation of microgrids. In this mode of operation, the microsour...
When paralleling multiple inverters that are capable of operating as an island, the inverters typica...
Voltage and frequency droop method is commonly used in microgrids to achieve proper autonomous power...
This paper focuses on the islanded operation of microgrids. In this mode of operation, the microsour...
Power electronics based MicroGrids consist of a number of voltage source inverters (VSIs) operating ...
The parallel operation of inverters in microgrids is mainly based on the droop method. Conventional ...
In this paper, a control strategy for the parallel operation of three-phase inverters forming an onl...
This paper presents a new control scheme that permits flexible power sharing between parallel invert...
In this paper, a control strategy for the parallel operation of three-phase inverters forming an onl...
Stability in island microgrids is crucial for efficient power distribution among distributed generat...
Conventional droop control is a basic control strategy for power sharing in islanded microgrid appli...
Stability in island microgrids is crucial for efficient power distribution among distributed generat...
An improved control strategy for grid-connected inverters within microgrids is presented in this pap...
A novel simple and effective autonomous current-sharing controller for parallel three-phase inverter...
A novel simple and effective autonomous currentsharing controller for parallel three-phase inverters...
This paper focuses on the islanded operation of microgrids. In this mode of operation, the microsour...
When paralleling multiple inverters that are capable of operating as an island, the inverters typica...
Voltage and frequency droop method is commonly used in microgrids to achieve proper autonomous power...
This paper focuses on the islanded operation of microgrids. In this mode of operation, the microsour...
Power electronics based MicroGrids consist of a number of voltage source inverters (VSIs) operating ...
The parallel operation of inverters in microgrids is mainly based on the droop method. Conventional ...
In this paper, a control strategy for the parallel operation of three-phase inverters forming an onl...
This paper presents a new control scheme that permits flexible power sharing between parallel invert...
In this paper, a control strategy for the parallel operation of three-phase inverters forming an onl...
Stability in island microgrids is crucial for efficient power distribution among distributed generat...
Conventional droop control is a basic control strategy for power sharing in islanded microgrid appli...
Stability in island microgrids is crucial for efficient power distribution among distributed generat...
An improved control strategy for grid-connected inverters within microgrids is presented in this pap...