This article proposes a framework to identify, visualize, and quantify risk of potential over/under voltage due to annual energy consumption and PV generation growth. The stochastic modeling considers the following: (i) Active and reactive power profiles for distribution transformers, dependent on annual energy consumption and activity in the serviced areas. (ii) Variable solar irradiance profiles that allow a broader range of PV generation scenarios for sunny, overcast, and cloudy days. The proposed framework uses multivariate-t copulas to model temporal correlations between random variables to generate synthetic scenarios. A probabilistic power flow is computed using the generated scenarios to define critical static operating regions. Res...
Economic viability is one of the important factors in determining the rate of customer adoption of p...
This paper presents a stochastic approach to assessing the hosting capacity for solar PV. The method...
This paper investigates residential distribution networks with uncertain loads and photovoltaic dist...
This article proposes a framework to identify, visualize, and quantify risk of potential over/under ...
With global reserves of fossil fuels depleting and governments across the world attempting to transi...
Connecting photovoltaic micro-installations to a low-voltage network changes the operating condition...
The stochastic nature of solar renewable power poses challenges in distribution networks with high-p...
Globally, solar photovoltaic (PV) installations on distribution LV feeders have increased significan...
The renewable policies in various countries are driving significant growth of grid connected renewab...
The rapid penetration of solar photovoltaic (PV) systems in distribution networks has imposed variou...
Large integration of solar Photo Voltaic (PV) in distribution network has resulted in over-voltage p...
The low voltage (LV) network's constraints are prone to violations with the introduction of distribu...
© 2014 IEEE. Aging network assets, significant variations in weather conditions, increased accommoda...
Accommodating a high penetration of intermittent photovoltaic (PV) in distribution systems can poten...
About 15 000-customers are connected to the individual secondary distribution networks supplied thro...
Economic viability is one of the important factors in determining the rate of customer adoption of p...
This paper presents a stochastic approach to assessing the hosting capacity for solar PV. The method...
This paper investigates residential distribution networks with uncertain loads and photovoltaic dist...
This article proposes a framework to identify, visualize, and quantify risk of potential over/under ...
With global reserves of fossil fuels depleting and governments across the world attempting to transi...
Connecting photovoltaic micro-installations to a low-voltage network changes the operating condition...
The stochastic nature of solar renewable power poses challenges in distribution networks with high-p...
Globally, solar photovoltaic (PV) installations on distribution LV feeders have increased significan...
The renewable policies in various countries are driving significant growth of grid connected renewab...
The rapid penetration of solar photovoltaic (PV) systems in distribution networks has imposed variou...
Large integration of solar Photo Voltaic (PV) in distribution network has resulted in over-voltage p...
The low voltage (LV) network's constraints are prone to violations with the introduction of distribu...
© 2014 IEEE. Aging network assets, significant variations in weather conditions, increased accommoda...
Accommodating a high penetration of intermittent photovoltaic (PV) in distribution systems can poten...
About 15 000-customers are connected to the individual secondary distribution networks supplied thro...
Economic viability is one of the important factors in determining the rate of customer adoption of p...
This paper presents a stochastic approach to assessing the hosting capacity for solar PV. The method...
This paper investigates residential distribution networks with uncertain loads and photovoltaic dist...