The paper presents the development of a dynamic simulation model of an island electric system for real-time simulation. The integration of a battery energy storage system (BESS) controlled in grid-forming mode is considered in the overall real-time model. The Simscape Electrical toolbox of MATLAB/Simulink is used for the development of the model, which is then deployed into an OPAL-RT device for the execution of simulations in real-time. The aspects related to the implementation of the island system for real-time simulation are discussed in detail. The possibility of an extended grid-forming control for the improvement of the dynamics of the system is also presented. Further developments of the work include the real-time examination of the island as a multi-energy system and real-time multi-site co-simulations for power hardware-in-the-loop experiments.
Ippolito M.G., Musca R., Riva Sanseverino E., Zizzo G. (2024). Real-Time Simulation of Island Electric System with Grid-Forming Controlled BESS. In Proceedings of 2024 IEEE International Conference on Environment and Electrical Engineering and 2024 IEEE Industrial and Commercial Power Systems Europe (EEEIC / I&CPS Europe) (pp. 01-05). Institute of Electrical and Electronics Engineers Inc. [10.1109/EEEIC/ICPSEurope61470.2024.10751332].
Real-Time Simulation of Island Electric System with Grid-Forming Controlled BESS
Ippolito M. G.;Musca R.;Riva Sanseverino E.;Zizzo G.
2024-01-01
Abstract
The paper presents the development of a dynamic simulation model of an island electric system for real-time simulation. The integration of a battery energy storage system (BESS) controlled in grid-forming mode is considered in the overall real-time model. The Simscape Electrical toolbox of MATLAB/Simulink is used for the development of the model, which is then deployed into an OPAL-RT device for the execution of simulations in real-time. The aspects related to the implementation of the island system for real-time simulation are discussed in detail. The possibility of an extended grid-forming control for the improvement of the dynamics of the system is also presented. Further developments of the work include the real-time examination of the island as a multi-energy system and real-time multi-site co-simulations for power hardware-in-the-loop experiments.File | Dimensione | Formato | |
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