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Real-Time Cosimulation of Power Systems: Integration of eMEGASIM and ePHASORSIM Using OPAL-RT Simulators

Author:
Rivero Peña, Daniel delUniovi authority; Singh, Shailendra; García, Pablo; Rodríguez, Pedro
Subject:

Reactive Power

Power system dynamics

Control systems

VSG

Real-time systems

co-simulation

Publication date:
2024-09-18
Editorial:

IEEE

Publisher version:
https://doi.org/10.1109/PEDG61800.2024.10667403
Citación:
del Rivero, D., Singh, S., García, P., & Rodríguez, P. (2024). Real-time cosimulation of power systems: Integration of eMEGASIM and ePHASORSIM using OPAL-RT simulators. 2024 IEEE 15th International Symposium on Power Electronics for Distributed Generation Systems (PEDG), 23–26 June 2024. https://doi.org/10.1109/PEDG61800.2024.10667403
Abstract:

This article presents a real-time cosimulation between two OPAL-RT simulators, utilizing the eMEGAsim system for simulations in the time domain and the ePHASORsim system for simulations in the phasor domain. It focuses on simulating a distributed Virtual Synchronous Generator control system with real power converters connected to a power system, facilitated by the interface through a high-speed DOLPHIN communication cable. The control system and interface configuration for cosimulation are detailed, along with the results obtained from the simulations. This real-time cosimulation approach provides an effective tool for the analysis and development of control systems in power environments.

This article presents a real-time cosimulation between two OPAL-RT simulators, utilizing the eMEGAsim system for simulations in the time domain and the ePHASORsim system for simulations in the phasor domain. It focuses on simulating a distributed Virtual Synchronous Generator control system with real power converters connected to a power system, facilitated by the interface through a high-speed DOLPHIN communication cable. The control system and interface configuration for cosimulation are detailed, along with the results obtained from the simulations. This real-time cosimulation approach provides an effective tool for the analysis and development of control systems in power environments.

URI:
https://hdl.handle.net/10651/75849
ISSN:
2329-5767
DOI:
10.1109/PEDG61800.2024.10667403
Patrocinado por:

The present work has been partially supported by the Spanish Ministry of Economy and Competitiveness funded by MCIN/AEI/10.13039/501100011033 under Grants MCINN-23-PID2022- 139479OB-C22, MCINN-22-TED2021-129796B-C21, and in part by the European Union NextGenerationEU/PRTR.

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