NoDue to high penetration of single-phase Photovoltaic (PV) cells into low voltage (LV) distribution networks, several impacts such as voltage unbalance, voltage rise, power losses, reverse power flow arise which leads to operational constraints violation in the network. In this paper, a time series Three Phase Optimal Power Flow (TPOPF) method is proposed to minimize the voltage unbalance in LV distribution networks with high penetration of residential PVs. TPOPF problem is formulated using the current injection method in which the PVs are modelled via a time-varying PV power profile with active and reactive power control. The proposed method is validated on a real LV distribution feeder. The results show that the reactive power management...
As photovoltaic (PV) penetration increases in low-voltage distribution networks, voltage variation m...
Utilization of rooftop photovoltaic cells (PVs) in residential feeders without controlling their rat...
The rapid expansion of consumer-driven installations of residential photovoltaic (PV) systems causes...
Youcef Bot, Ahmed Allali, Mouloud Denai, ‘Distribution Network Voltage Unbalance Control under High ...
This work focuses on using the full potential of PV inverters in order to improve the efficiency of ...
The rapid uptake of residential photovoltaic (PV); systems is causing serious power quality issues s...
The continuous expansion of consumer-driven installations of residential rooftop photovoltaic (PV) s...
The continuous expansion of consumer-driven installations of residential rooftop photovoltaic (PV) s...
The continuous expansion of consumer-driven installations of residential rooftop photovoltaic (PV) s...
The rapid uptake of residential photovoltaic (PV) systems is causing serious power quality issues ...
The rapid uptake of residential photovoltaic (PV) systems is causing serious power quality issues ...
With the rapid increase of grid-connected PV systems over the last decades, genuine challenges have ...
With the rapid increase of grid-connected PV systems over the last decades, genuine challenges have ...
This paper presents a three-phase optimal power flow (TOFP) based method for mitigating the voltage ...
This paper presents a three-phase optimal power flow (TOFP) based method for mitigating the voltage ...
As photovoltaic (PV) penetration increases in low-voltage distribution networks, voltage variation m...
Utilization of rooftop photovoltaic cells (PVs) in residential feeders without controlling their rat...
The rapid expansion of consumer-driven installations of residential photovoltaic (PV) systems causes...
Youcef Bot, Ahmed Allali, Mouloud Denai, ‘Distribution Network Voltage Unbalance Control under High ...
This work focuses on using the full potential of PV inverters in order to improve the efficiency of ...
The rapid uptake of residential photovoltaic (PV); systems is causing serious power quality issues s...
The continuous expansion of consumer-driven installations of residential rooftop photovoltaic (PV) s...
The continuous expansion of consumer-driven installations of residential rooftop photovoltaic (PV) s...
The continuous expansion of consumer-driven installations of residential rooftop photovoltaic (PV) s...
The rapid uptake of residential photovoltaic (PV) systems is causing serious power quality issues ...
The rapid uptake of residential photovoltaic (PV) systems is causing serious power quality issues ...
With the rapid increase of grid-connected PV systems over the last decades, genuine challenges have ...
With the rapid increase of grid-connected PV systems over the last decades, genuine challenges have ...
This paper presents a three-phase optimal power flow (TOFP) based method for mitigating the voltage ...
This paper presents a three-phase optimal power flow (TOFP) based method for mitigating the voltage ...
As photovoltaic (PV) penetration increases in low-voltage distribution networks, voltage variation m...
Utilization of rooftop photovoltaic cells (PVs) in residential feeders without controlling their rat...
The rapid expansion of consumer-driven installations of residential photovoltaic (PV) systems causes...