Energy control and design optimization of a hybrid solar-hydrogen energy storage system using various solar panel technologies
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Elsevier BV
Reference76 articles.
1. A novel multi-generation system for sustainable power, heating, cooling, freshwater, and methane production: thermodynamic, economic, and environmental analysis;Zheng;Energy,2024
2. An innovative process design and multi-criteria study/optimization of a biomass digestion-supercritical carbon dioxide scenario toward boosting a geothermal-driven cogeneration system for power and heat;Zhu;Energy,2024
3. Investigation of a novel scheme utilizing solar and geothermal energies, generating power and ammonia: Exergoeconomic and exergoenvironmental analyses and cuckoo search optimization;Gao;Energy,2024
4. DGNet: an adaptive lightweight defect detection model for new energy vehicle battery current collector;Lei;IEEE Sensors J.,2023
5. A distributed economic dispatch strategy for power–water networks;Li;IEEE Trans Control Netw Syst,2021
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