Projektdetaljer
Beskrivelse
The green power transition heavily relies on technological advancements in power systems and their seamless integration. These advancements are responsible for the improvement in efficiency and reliability of power converters within the system. Ensuring robust controllability of power converters during operation is essential for supporting grid stability. Furthermore, the impact of distributed generation must be carefully assessed to optimize its integration and minimize disruptions to the overall power system.
With high penetration of inverter-based renewable energy sources (RESs), grid stability is challenged due to reduced system inertia, increased harmonic distortion, and potential frequency deviations. The proposed test setup will allow real-time testing of advanced control strategies for power converters, including inertia emulation, adaptive droop control, and grid-forming inverters to enhance system resilience.
This application is submitted to attract funding for our work with intelligent controlling of grid integrated power converters and its capability to support the grid in case of faulty condition.
With high penetration of inverter-based renewable energy sources (RESs), grid stability is challenged due to reduced system inertia, increased harmonic distortion, and potential frequency deviations. The proposed test setup will allow real-time testing of advanced control strategies for power converters, including inertia emulation, adaptive droop control, and grid-forming inverters to enhance system resilience.
This application is submitted to attract funding for our work with intelligent controlling of grid integrated power converters and its capability to support the grid in case of faulty condition.
| Kort titel | Fabrikant Mads Clausens Fond |
|---|---|
| Status | Afsluttet |
| Effektiv start/slut dato | 01/07/2025 → 31/12/2025 |
Finansiering
- Fabrikant Mads Clausens Fond: 100.000,00 kr.
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