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Design and Performance evaluation of Proposed 2 kW Solar PV Rooftop on Grid System in Odisha using PVsyst

机译:使用PVsyst在奥里萨邦拟建的2 kW太阳能光伏并网屋顶系统的设计和性能评估

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Main factors driving towards renewable energy are the environmental effects and load demand of electricity. For residential as well as commercial applications, the primary purpose is to determine the methods driven by mathematical models for a grid-tied solar PV system. In Odisha state the average value of solar irradiation is around 1156.39 W/sq. m. So the solar rooftop plant of 1 kWp will generate on yearly basis an average value of 4.8 kWh of electricity per day (taking into account 5.5 sunshine hours). For the generation of 1 kWp, carbon dioxide discharges mitigated is 28 tonnes. So the installation is comparable of planting 45 trees over the life time. In this paper by using PVsyst V6.84 software a case study of 2 kW installation of solar PV plant on rooftop is analyzed for residential load utilization of 8.9 kWh/day. The simulation result gives available AC energy, used energy and excess energy. The generated excess energy is given to the utility grid. Therefore, development of this kind of system provides the green energy for storage and also worthwhile development of the society.
机译:推动可再生能源发展的主要因素是环境影响和电力负荷需求。对于住宅和商业应用,主要目的是确定由数学模型驱动的并网太阳能光伏系统的方法。在奥里萨邦,太阳辐射的平均值约为1156.39 W / sq。米因此,1 kWp的太阳能屋顶发电厂每年将平均每天平均发电4.8 kWh(考虑到5.5个日照小时)。对于1 kWp的发电,减少的二氧化碳排放量为28吨。因此,该安装可与在整个生命周期内种植45棵树相媲美。在本文中,使用PVsyst V6.84软件分析了屋顶安装2 kW太阳能光伏电站的案例,其住宅负荷利用率为8.9 kWh / day。仿真结果给出了可用的交流能量,用过的能量和多余的能量。产生的多余能量被提供给公用电网。因此,这种系统的开发为存储提供了绿色能源,也为社会提供了有价值的发展。

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