Co-simulation techniques are gaining popularity amongst the power system research community to analyse future scalable Smart Grid solutions. However, complications such as multiple communication protocols, uncertainty in latencies are holding-up the widespread usage of these techniques for power system analysis. These issues are even further exacerbated when applied to Digital Real-Time Simulations (DRTS) with strict real-time constraints for Power Hardware-In-the-Loop (PHIL) tests. In this paper, we thoroughly test and demonstrate an innovative co-simulation infrastructure that allows to interconnect different DRTS through the Aurora 8B/10B protocol to reduce the effects of communication latency and respect real-time constraints. The Id...
The modern applied research requires multidisciplinary approaches and can be effectively enriched th...
Novel concepts enabling a resilient future power system and their subsequent experimental evaluation...
The integration of smart grid technologies in interconnected power system networks presents multiple...
Co-simulation techniques are gaining popularity amongst the power system research community to analy...
The framework for virtual integration of laboratories enables co-simulation and joint experiments th...
Future smart grids with more distributed generation and flexible demand require well-verified contro...
The increasing complexity of power systems has warranted the development of geographically distribut...
As future power systems become increasingly complex and interconnected to other energy carriers, a s...
This article presents a co-simulation framework consistent with the real-time simulation for operati...
© 2017 IEEE. Distributed real-time simulation allows the sharing of simulator equipment and componen...
As the landscape of devices that interact with the electrical grid expands, also the complexity of t...
This task force paper summarizes the state-of-the-art real-time digital simulation concepts and tech...
The modern applied research requires multi-disciplinary approaches and can be effectively enriched t...
This paper identifies challenges presented in unified co-simulation of power and communication netwo...
Wide area measurement and control methods should be employed in modern grids to ensure a more resili...
The modern applied research requires multidisciplinary approaches and can be effectively enriched th...
Novel concepts enabling a resilient future power system and their subsequent experimental evaluation...
The integration of smart grid technologies in interconnected power system networks presents multiple...
Co-simulation techniques are gaining popularity amongst the power system research community to analy...
The framework for virtual integration of laboratories enables co-simulation and joint experiments th...
Future smart grids with more distributed generation and flexible demand require well-verified contro...
The increasing complexity of power systems has warranted the development of geographically distribut...
As future power systems become increasingly complex and interconnected to other energy carriers, a s...
This article presents a co-simulation framework consistent with the real-time simulation for operati...
© 2017 IEEE. Distributed real-time simulation allows the sharing of simulator equipment and componen...
As the landscape of devices that interact with the electrical grid expands, also the complexity of t...
This task force paper summarizes the state-of-the-art real-time digital simulation concepts and tech...
The modern applied research requires multi-disciplinary approaches and can be effectively enriched t...
This paper identifies challenges presented in unified co-simulation of power and communication netwo...
Wide area measurement and control methods should be employed in modern grids to ensure a more resili...
The modern applied research requires multidisciplinary approaches and can be effectively enriched th...
Novel concepts enabling a resilient future power system and their subsequent experimental evaluation...
The integration of smart grid technologies in interconnected power system networks presents multiple...