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Design and simulation of a PV-grid connected system

机译:光伏并网系统的设计与仿真

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This work presents the design and simulation of 10 kW grid-connected photovoltaic (PV) systems as feasible power generators for the Hashemite University campus (32.05°N, 36.06°E). The simulation is performed to justify the accuracy and reliability of such design using PV-SOL and Meteonorm simulation software. In the primary simulation runs a set of parameters including the module power, PV-solar panel size, inverter type, global radiation and angle of inclination were used. The results of those runs lead to the final simulation parameters which are used for the 10 kW PV system. This work also presents a comparison between the performances of different PV panel sizes and different inclination angles. The final design of 10-kW PV-system consists of 33 PV panels of 300 W each and three inverters of 3.4 kW each. In order to highlight the economical and ecological effectiveness and the promising potential of the proposed system, a comparison between the costs of one kWh generated by our system with that of the public electricity tariff has been conducted.
机译:这项工作介绍了10 kW并网光伏(PV)系统的设计和仿真,该系统是哈希姆大学校园(32.05°N,36.06°E)的可行发电机。使用PV-SOL和Meteonorm仿真软件进行仿真以证明这种设计的准确性和可靠性。在主要的模拟运行中,使用了一组参数,包括模块功率,PV太阳能电池板尺寸,逆变器类型,整体辐射和倾斜角度。这些运行的结果将得出最终的仿真参数,这些参数将用于10 kW光伏系统。这项工作还提出了不同的光伏面板尺寸和不同的倾斜角度之间的性能比较。 10 kW光伏系统的最终设计包括33块300 W的光伏面板和3块3.4 kW的逆变器。为了突出所提议系统的经济和生态效益以及潜力,我们将系统产生的1 kWh成本与公共电价进行了比较。

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