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首页> 外文期刊>International journal of hydrogen energy >Development of hybrid photovoltaic-fuel cell system for stand-alone application
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Development of hybrid photovoltaic-fuel cell system for stand-alone application

机译:用于独立应用的混合光伏燃料电池系统的开发

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In this paper we present firstly the different hybrid systems with fuel cell. Then, the study is given with a hybrid fuel cell-photovoltaic generator. The role of this system is the production of electricity without interruption in remote areas. It consists generally of a photovoltaic generator (PV), an alkaline water electrolyzer, a storage gas tank, a proton exchange membrane fuel cell (PEMFC), and power conditioning units (PCU) to manage the system operation of the hybrid system. Different topologies are competing for an optimal design of the hybrid photovoltaic-electrolyzer-fuel cell system. The studied system is proposed. PV subsystem work as a primary source, converting solar irradiation into electricity that is given to a DC bus. The second working subsystem is the electrolyzer which produces hydrogen and oxygen from water as a result of an electrochemical process. When there is an excess of solar generation available, the electrolyzer is turned on to begin producing hydrogen which is sent to a storage tank. The produced hydrogen is used by the third working subsystem (the fuel cell stack) which produces electrical energy to supply the DC bus. The modelisation of the global system is given and the obtained results are presented and discussed.
机译:在本文中,我们首先介绍具有燃料电池的不同混合动力系统。然后,用混合燃料电池-光伏发电机进行了研究。该系统的作用是在偏远地区不间断发电。它通常由光伏发电机(PV),碱性水电解槽,储气罐,质子交换膜燃料电池(PEMFC)和功率调节单元(PCU)组成,以管理混合动力系统的系统运行。不同的拓扑结构正在争夺混合光伏-电解-燃料电池系统的最佳设计。提出了研究的系统。光伏子系统作为主要来源,将太阳辐射转化为电能,再提供给直流母线。第二个工作子系统是电解器,通过电化学过程从水中产生氢和氧。当可用的太阳能发电量过多时,打开电解槽以开始产生氢气,然后将氢气发送到储罐。产生的氢气由第三工作子系统(燃料电池堆)使用,该子系统产生电能以供应直流母线。给出了全球系统的建模,并介绍和讨论了获得的结果。

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