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Energy flow and management of a hybrid wind/PV/fuel cell generation system

机译:混合风/光伏/燃料电池发电系统的能量流和管理

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In this paper an energy system comprising three energy sources, namely; PV, wind, and fuel cells, is proposed. Each of the three energy sources is controlled so as to deliver energy at optimum efficiency. Fuzzy logic control is employed to achieve maximum power tracking for both PV and wind energies, and to deliver this maximum power to a fixed DC voltage bus. The fixed voltage bus supplies the load, while the excess power feeds the water electrolyzer used to generate hydrogen for supplying the fuel cells. A management system is designed to manage the power flow between the system components in order to satisfy the load requirements throughout the whole day. A case study is done using practical data from El-Hammam site (40 km west of Alexandria, Egypt). The study defines the power generated by wind and PV systems, the hydrogen generated using and stored in tanks, and the power generated by the fuel cells to supply the deficiency in the load demand. Simulation results, done for two seasons, proved the accuracy of the fuzzy logic controllers. Also a complete description of the management system is presented.
机译:在本文中,一个能源系统包括三个能源:提出了光伏,风能和燃料电池。三个能量源中的每一个都受到控制,以便以最佳效率输送能量。采用模糊逻辑控制来实现对光伏和风能的最大功率跟踪,并将该最大功率传递至固定的直流电压总线。固定电压总线为负载供电,而多余的功率则为用于生成氢气的水电解槽供电,从而为燃料电池供电。设计管理系统来管理系统组件之间的功率流,以满足全天的负载需求。使用来自El-Hammam站点(埃及亚历山大以西40公里)的实际数据进行了案例研究。该研究定义了风能和光伏系统产生的功率,使用并存储在储罐中的氢以及燃料电池产生的功率,以弥补负载需求不足。为期两个季度的仿真结果证明了模糊逻辑控制器的准确性。还介绍了管理系统的完整说明。

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