Distributed Generation is growing at important rates due to several reasons, including, in some countries, the strong penetration of renewable generating plants. Voltage rise is a considerable problem that prevents generators from injecting more active power into distribution networks. After a review of recently proposed mitigation techniques, a voltage rise mitigation technique is presented. The technique is based on a coordinated reactive power control of the distributed generators which takes into account the capability limits of the generators. It is suitable for utilization in distribution networks equipped with or without a dedicated communication infrastructure
Traditionally, voltage control in MV distribution networks has been focused on dealing with voltage ...
In a distribution system, it is essential to maintain the voltage variation within a specified limit...
With increasing levels of distributed generation, the control of voltage levels across distribution ...
The continued interest in the use of distributed generation in recent years is leading to the growth...
The rapid growth of grid-connected distributed generation has increased the likelihood of over-volta...
This paper presents voltage and reactive power control methods in distribution systems in the presen...
A high density of grid-connected photovoltaic (PV) power generation systems is expected to occur in ...
Power system voltage control has traditionally been the responsibility of transmission-connected re...
The structure and control methods of existing distribution networks are planned assuming unidirectio...
Distributed reactive power supply is necessary in distribution networks for an optimized network ope...
Energy demand has constantly been on the rise due to aggressive industrialization and civilization. ...
For the last three decades, a large scale integration of distributed generation (DG) is beginning to...
The electric power distribution network has traditionally been operated in a passive mode where most...
A growing trend is connection of new renewable energy resources to the power system. Small and mediu...
Nowadays, integration of small-scale electricity generators, known as Distributed Generation (DG), i...
Traditionally, voltage control in MV distribution networks has been focused on dealing with voltage ...
In a distribution system, it is essential to maintain the voltage variation within a specified limit...
With increasing levels of distributed generation, the control of voltage levels across distribution ...
The continued interest in the use of distributed generation in recent years is leading to the growth...
The rapid growth of grid-connected distributed generation has increased the likelihood of over-volta...
This paper presents voltage and reactive power control methods in distribution systems in the presen...
A high density of grid-connected photovoltaic (PV) power generation systems is expected to occur in ...
Power system voltage control has traditionally been the responsibility of transmission-connected re...
The structure and control methods of existing distribution networks are planned assuming unidirectio...
Distributed reactive power supply is necessary in distribution networks for an optimized network ope...
Energy demand has constantly been on the rise due to aggressive industrialization and civilization. ...
For the last three decades, a large scale integration of distributed generation (DG) is beginning to...
The electric power distribution network has traditionally been operated in a passive mode where most...
A growing trend is connection of new renewable energy resources to the power system. Small and mediu...
Nowadays, integration of small-scale electricity generators, known as Distributed Generation (DG), i...
Traditionally, voltage control in MV distribution networks has been focused on dealing with voltage ...
In a distribution system, it is essential to maintain the voltage variation within a specified limit...
With increasing levels of distributed generation, the control of voltage levels across distribution ...