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Design and optimum energy management of a hybrid renewable energy system based on efficient various hydrogen production
Affiliation:1. Department of Electrical Engineering, Miyaneh Branch, Islamic Azad University, Miyaneh, Iran;2. Holcombe Department of Electrical and Computer Engineering, Clemson University, USA;3. School of Computing, Clemson University, USA;1. Instituto LEICI, UNLP-CONICET, Facultad de Ingeniería, Universidad Nacional de La Plata, C.C.91 (1900) La Plata, Argentina;2. Departamento de Ingeniería Química, Facultad de Ingeniería, Universidad Nacional de La Plata, Argentina;3. Comisión de Investigaciones Científicas de la Provincia de Buenos Aires (CICpBA), Argentina;1. Electrical Engineering Department, Faculty of Industrial Education, Beni-Suef University, Beni-Suef, Egypt;2. Electrical Engineering Department, Faculty of Engineering, Albaha University, Albaha, Saudi Arabia;3. FCLab FR CNRS 3539, Femto-ST UMR CNRS 6174, Univ. of Bourgogne Franche-Comte/UTBM, 90010 Belfort Cedex, France;4. Electrical Power and Machines Department, Faculty of Engineering, Zagazig University, 44519 Zagazig, Egypt;1. School of Electrical Engineering, Southwest Jiaotong University, Chengdu 610031, China;2. Energy Research Institute, National Development and Reform Commission, China;3. Academy of Macroeconomic Research, National Development and Reform Commission, China
Abstract:Utilizing renewable energy resources is one of the convenient ways to reduce greenhouse gas emissions. However, the intermittent nature of these resources has led to stochastic characteristics in the generation and load balancing of the microgrid systems. To handle these issues, an energy management optimization for microgrids operation should be done to urge the minimization of total system costs, emissions, and fuel consumption. An optimization program for decreasing the operational cost of a hybrid microgrid consisting of photovoltaic array, wind unit, electrolyzer, hydrogen storage system, reformer, and fuel cell is presented. Two different methods of producing hydrogen are considered in this study to ensure the effectiveness of the developed methodology. In the microgrid system with high penetration of renewable energy resources, using storage technologies to compensate for the intermittency of these resources is necessary. To evaluate the functioning of the microgrid system, a mathematical model for each source is developed to coordinate the system operation involving energy conversion between hydrogen and electricity. Particle Swarm Optimization Algorithm is utilized to determine the optimum size and operational energy management within the system. It is evident from the results that there is about a 10% reduction in the amount of CH4 consumption in reformer when the electrolyzer was employed in the system. It is observed that the CH4 reduction in summer and fall is higher than other seasons (10.6% and 11.5%, respectively). The reason is that the highest RES production occurs in these seasons during a year. It is also worth mentioning that the electrolyzer technology would play a significant role in decreasing the CH4 consumption in the microgrid system.
Keywords:Energy optimization  Fuel cell  Electrolyzer  Hydrogen storage system  Microgrid  Renewable energy resources
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