Integration of Hydrogen Fuel Cells with Renewable Energy Systems for Sustainable Power Generation
B. Madhu Sudhana Rao1, P. Pavani2, T . Bhargav3, K. Jashma4, D. Sai Sandeep5
1Assistant Professor, Department of Electrical and Electronics Engineering, Avanthi Institute of Engineering and Technology, Cherukupally, Vizianagaram - 531162., Andhra Pradesh, India
2,3,4,5B.Tech Student , Department of Electrical and Electronics Engineering, Avanthi Institute of Engineering and Technology, Cherukupally, Vizianagaram - 531162., Andhra Pradesh, India
Email: venkatbatta49@gmail.com
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Abstract - The increasing demand for smooth and sustainable energy answers has brought about the combination of hydrogen gas cells with renewable electricity systems, presenting a reliable and energy generation alternative. Hydrogen fuel cells offer excessive performance, zero carbon emissions, and scalable electricity storage, making them a promising answer for mitigating weather change and fossil gas dependence. The combination of solar, wind, and hydrogen strength garage ensures continuous strength era, addressing the intermittency problems related to renewable electricity sources. This study explores the combination of hydrogen gasoline cells with renewable electricity systems, specializing in energy conversion efficiency, storage optimization, and grid stability. The study examines different hydrogen production techniques, which include electrolysis powered by way of sun and wind power, in conjunction with strategies for hydrogen garage, gasoline cellular performance optimization, and hybrid power system design. A simulation-based analysis is carried out to evaluate the efficiency, fee-effectiveness, and environmental blessings of hydrogen-powered renewable electricity systems. The outcomes indicate that hydrogen gasoline cells significantly improve energy reliability and cargo balancing in hybrid renewable systems. but, demanding situations along with hydrogen storage barriers, infrastructure improvement, and cost constraints must be addressed for massive-scale deployment. destiny studies have to focus on superior hydrogen production strategies, AI-driven strength control, and coverage frameworks for sustainable hydrogen integration.
Key Words: Hydrogen fuel cells, renewable energy, electrolysis, energy storage, sustainable power generation