Photovoltaic-penetrated power distribution networks’ resiliency-oriented day-ahead scheduling equipped with power-to-hydrogen systems: A risk-driven decision framework
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Elsevier BV
Reference44 articles.
1. Eco-environmental Impacts of x-to-x energy conversion on interconnected multi-energy microgrids: a multi-objective optimization;Jodeiri-Seyedian;Sustain Cities Soc,2023
2. A two-stage hybrid robust-stochastic day-ahead scheduling of transactive microgrids considering the possibility of main grid disconnection;Nourollahi;Int J Electr Power Energy Syst,2022
3. Resiliency-oriented microgrid optimal scheduling;Khodaei;IEEE Trans Smart Grid,2014
4. The potential to improve the value of U.S. Geothermal electricity generation through flexible operations;Millstein;J Energy Resour Technol,2021
5. Power-to-Gas: electrolysis and methanation status review;Thema;Renew Sustain Energy Rev,2019
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