Energy storage systems have been recently recognized as an effective solution to tackle power imbalances and voltage violations faced by distribution system operators due to the increasing penetration of low carbon technologies. To fully exploit their benefits, optimal sizing of these devices is a key problem at the planning stage. This paper considers the sizing problem of the energy storage systems installed in a distribution network with the aim, e.g., of preventing over- and undervoltages. In order to accommodate uncertainty on future realizations of demand and generation, the optimal sizing problem is formulated in a two-stage stochastic framework, where the first stage decision involves the storage sizes, while the second stage proble...
The growing diffusion of electric vehicles connected to distribution networks for charging purposes ...
The optimal exploitation and management of electrical energy passes through the possibility to store...
Storage technology is a key enabler for the integration of renewable energy resources into power sys...
In this paper we address the problem of optimal sizing of a given number of energy storage systems i...
Over recent years there has been a general consensus about the necessary changes towards modernizing...
A key subject in the study of smart grids is to accommodate uncertainty in various contexts, includi...
Energy storage systems may represent a viable solution to tackle over- and undervoltages arising in ...
This paper addresses the problem of finding the optimal configuration (number, locations, and sizes)...
This paper addresses the problem of optimal placement and sizing of distributed energy storage devic...
As the penetration level of transmission-scale time-intermittent renewable generation resources incr...
In the last decades, power systems are undergoing major modifications, mostly driven by the climate ...
We consider the problem of how to generate uncertainty scenarios to be used in energy storage sizing...
Energy storage systems can improve the uncertainty and variability related to renewable energy sourc...
This paper presents a method to determine the optimal location, energy capacity, and power rating of...
The growing diffusion of electric vehicles connected to distribution networks for charging purposes ...
The optimal exploitation and management of electrical energy passes through the possibility to store...
Storage technology is a key enabler for the integration of renewable energy resources into power sys...
In this paper we address the problem of optimal sizing of a given number of energy storage systems i...
Over recent years there has been a general consensus about the necessary changes towards modernizing...
A key subject in the study of smart grids is to accommodate uncertainty in various contexts, includi...
Energy storage systems may represent a viable solution to tackle over- and undervoltages arising in ...
This paper addresses the problem of finding the optimal configuration (number, locations, and sizes)...
This paper addresses the problem of optimal placement and sizing of distributed energy storage devic...
As the penetration level of transmission-scale time-intermittent renewable generation resources incr...
In the last decades, power systems are undergoing major modifications, mostly driven by the climate ...
We consider the problem of how to generate uncertainty scenarios to be used in energy storage sizing...
Energy storage systems can improve the uncertainty and variability related to renewable energy sourc...
This paper presents a method to determine the optimal location, energy capacity, and power rating of...
The growing diffusion of electric vehicles connected to distribution networks for charging purposes ...
The optimal exploitation and management of electrical energy passes through the possibility to store...
Storage technology is a key enabler for the integration of renewable energy resources into power sys...