A two-layer feedback optimization and safety control method using discrete-time control barrier functions enables high renewable energy utilization and safe real-time operation of off-grid wind-powered multi-electrolyzer systems.
Ulleberg, Modeling of advanced alkaline electrolyz ers: a system simula- tion approach, Int
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Real-Time Coordinated Operation of Off-Grid Wind Powered Multi-Electrolyzer Systems Considering Thermal Dynamics and HTO Safety
A two-layer feedback optimization and safety control method using discrete-time control barrier functions enables high renewable energy utilization and safe real-time operation of off-grid wind-powered multi-electrolyzer systems.