In this paper a voltage unbalance mitigation technique for low-voltage microgrids or feeders in presence of large single-phase loads is introduced. In order to take maximum advantage of the existing hardware, the proposed solution consists of a sequence-based decentralized voltage control to be embedded in three-phase VSC connecting distributed generation to the considered system. Furthermore, a centralized controller is proposed to define optimal negative and zero sequence voltage reference. Control effectiveness is numerically verified considering a low-voltage feeder case study
This paper proposes operation and control of converter based single phase distributed generators (DG...
This paper presents a new multi-objective control strategy for inverter-interfaced distributed gener...
© 2020 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
In this paper a voltage unbalance mitigation technique for low-voltage microgrids or feeders in pres...
Youcef Bot, Ahmed Allali, Mouloud Denai, ‘Distribution Network Voltage Unbalance Control under High ...
In this paper, a control strategy with low bandwidth communications for paralleled three-phase inver...
©2020 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...
This work focuses on using the full potential of PV inverters in order to improve the efficiency of ...
Power quality control still remains as one of major research topic in power engineering. Weak power...
To dynamically reduce voltage unbalance (VU) along low voltage distribution feeders, a distributed i...
This paper focuses on voltage unbalanced associated with power systems, their causes and negative ...
The increasing presence of single-phase distributed generators and unbalanced loads in the electric ...
This paper proposes a secondary voltage unbalance control approach that compensate voltage unbalance...
© 2015 IEEE. Single phase loads, which constitute the majority of low voltage consumers, give rise t...
The predictive-based strategy employed in this paper allows an inverter to simultaneously inject pos...
This paper proposes operation and control of converter based single phase distributed generators (DG...
This paper presents a new multi-objective control strategy for inverter-interfaced distributed gener...
© 2020 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
In this paper a voltage unbalance mitigation technique for low-voltage microgrids or feeders in pres...
Youcef Bot, Ahmed Allali, Mouloud Denai, ‘Distribution Network Voltage Unbalance Control under High ...
In this paper, a control strategy with low bandwidth communications for paralleled three-phase inver...
©2020 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...
This work focuses on using the full potential of PV inverters in order to improve the efficiency of ...
Power quality control still remains as one of major research topic in power engineering. Weak power...
To dynamically reduce voltage unbalance (VU) along low voltage distribution feeders, a distributed i...
This paper focuses on voltage unbalanced associated with power systems, their causes and negative ...
The increasing presence of single-phase distributed generators and unbalanced loads in the electric ...
This paper proposes a secondary voltage unbalance control approach that compensate voltage unbalance...
© 2015 IEEE. Single phase loads, which constitute the majority of low voltage consumers, give rise t...
The predictive-based strategy employed in this paper allows an inverter to simultaneously inject pos...
This paper proposes operation and control of converter based single phase distributed generators (DG...
This paper presents a new multi-objective control strategy for inverter-interfaced distributed gener...
© 2020 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...