A bidirectional four-port DC–DC converter for grid connected and isolated loads of hybrid renewable energy system using hybrid approach
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s10470-024-02251-6.pdf
Reference30 articles.
1. Tamalouzt, S., Benyahia, N., Rekioua, T., Rekioua, D., & Abdessemed, R. (2016). Performances analysis of WT-DFIG with PV and fuel cell hybrid power sources system associated with hydrogen storage hybrid energy system. International Journal of Hydrogen Energy, 41(45), 21006–21021.
2. Pan, I., & Das, S. (2016). Fractional order fuzzy control of hybrid power system with renewable generation using chaotic PSO. ISA Transactions, 62, 19–29.
3. García-Vázquez, C. A., Espinoza-Ortega, H., Llorens-Iborra, F., & Fernández-Ramírez, L. M. (2022). Feasibility analysis of a hybrid renewable energy system with vehicle-to-home operations for a house in off-grid and grid-connected applications. Sustainable Cities and Society, 86, 104124.
4. Pang, Y., Pan, L., Zhang, J., Chen, J., Dong, Y., & Sun, H. (2022). Integrated sizing and scheduling of an off-grid integrated energy system for an isolated renewable energy hydrogen refueling station. Applied Energy, 323, 119573.
5. Ma, Q., Huang, X., Wang, F., Xu, C., Babaei, R., & Ahmadian, H. (2022). Optimal sizing and feasibility analysis of grid-isolated renewable hybrid microgrids: Effects of energy management controllers. Energy, 240, 122503.
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