Study of the potential for solar power plant at At Taqwa Mosque Using PV Syst

Radiktyo Nindyo Sumarno, Laily Muntasiroh, Dina Mariani
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Abstract

Countries located on the equator have a relatively high intensity of solar radiation. The thing that is most needed in a solar power plant is the intensity of solar radiation. Based on this, Indonesia is very suitable for implementing solar power plants. The power produced by a solar power plant is directly pro-portional to the intensity of solar radiation received by the solar panels. To maximize electrical power production, it is necessary to design a series of solar panel units to be connected in series or parallel. Solar panels connected in parallel will increase the nominal total voltage, whereas when connected in series they will increase the nominal total current. This research discusses the effect of the series-parallel configuration of solar panel installation on the power production received in a building in the campus environment. The method used to obtain the most optimal energy production is to use a combination of series and parallel solar panels. Daily sunlight data is simulated via PvSyst. The research results show that the most optimal energy production is obtained by designing a series circuit of 20 panels combined with a parallel circuit of 5 panels. The more modules connected in series, the total voltage will increase. The more modules that are connected in parallel, the total current will increase. 
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利用光伏系统研究塔克瓦清真寺太阳能发电厂的潜力
赤道国家的太阳辐射强度相对较高。太阳能发电厂最需要的就是太阳辐射强度。因此,印度尼西亚非常适合建设太阳能发电站。太阳能发电厂的发电量与太阳能电池板接收到的太阳辐射强度成正比。为了最大限度地提高发电量,有必要设计一系列串联或并联的太阳能电池板装置。并联的太阳能电池板会增加标称总电压,而串联的太阳能电池板会增加标称总电流。本研究讨论了太阳能电池板安装的串联-并联配置对校园环境中建筑物发电量的影响。获得最佳发电量的方法是将串联和并联太阳能电池板结合使用。每天的日照数据通过 PvSyst 进行模拟。研究结果表明,通过设计一个由 20 块太阳能电池板组成的串联电路和一个由 5 块太阳能电池板组成的并联电路,可以获得最佳的发电量。串联的模块越多,总电压就越高。并联的模块越多,总电流就会增加。
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