This paper presents a co-simulation environment fortesting different operation, control and aggregation strategies ona power network model with multiple voltage levels. Inparticular this environment, called "OpSim", is used toinvestigate the question of how multiple grid operators -controlling different voltage levels and I or grid areas - couldinteract in a future grid scenario with a high amount ofrenewable energy resources. First the architecture of "OpSim"is presented, which uses a message bus to connect andsynchronize multiple simulators, representing the grid, as wellas grid operators strategies. Second, a proof-of-concept isdemonstrated in which an interaction between multiple gridoperators is investigated. The message rate between s...
International audienceSmart grids are complex systems for which simulation offers a practical way to...
This chapter presents an approach to the analysis of Smart Grids based on a multi-layer representati...
Future smart grids with more distributed generation and flexible demand require well-verified contro...
The complexity of energy systems increases as more renewable generation and energy storage technolog...
Wide area measurement and control methods should be employed in modern grids to ensure a more resili...
Today's electricity grid is transitioning to a so-called smart grid. The associated challenges and f...
Given the complexity, scale and heterogeneity of modern power systems, many comprehensive simulation...
This paper identifies challenges presented in unified co-simulation of power and communication netwo...
The Co-Simulation in the paper aims to simulate a smart grid with its two components. The approach o...
Smart grid studies have been generating a lot of interest both in the business and research communit...
In smart grid research domain, simulation study is the first choice, since the analytic complexity i...
Smart grids rely on the integration of distributed energy resources towards an intelligent and distr...
In future smart distribution networks the expected bidirectional exchange of large amount of data wi...
The growth of power systems, increase of distributed energy resources and its associated complexity ...
This chapter presents an approach to the analysis of Smart Grids based on a multi-layer representati...
International audienceSmart grids are complex systems for which simulation offers a practical way to...
This chapter presents an approach to the analysis of Smart Grids based on a multi-layer representati...
Future smart grids with more distributed generation and flexible demand require well-verified contro...
The complexity of energy systems increases as more renewable generation and energy storage technolog...
Wide area measurement and control methods should be employed in modern grids to ensure a more resili...
Today's electricity grid is transitioning to a so-called smart grid. The associated challenges and f...
Given the complexity, scale and heterogeneity of modern power systems, many comprehensive simulation...
This paper identifies challenges presented in unified co-simulation of power and communication netwo...
The Co-Simulation in the paper aims to simulate a smart grid with its two components. The approach o...
Smart grid studies have been generating a lot of interest both in the business and research communit...
In smart grid research domain, simulation study is the first choice, since the analytic complexity i...
Smart grids rely on the integration of distributed energy resources towards an intelligent and distr...
In future smart distribution networks the expected bidirectional exchange of large amount of data wi...
The growth of power systems, increase of distributed energy resources and its associated complexity ...
This chapter presents an approach to the analysis of Smart Grids based on a multi-layer representati...
International audienceSmart grids are complex systems for which simulation offers a practical way to...
This chapter presents an approach to the analysis of Smart Grids based on a multi-layer representati...
Future smart grids with more distributed generation and flexible demand require well-verified contro...