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Design and analysis of rooftop grid tied 50 kW capacity Solar Photovoltaic (SPV) power plant

机译:屋顶并网50 kW容量太阳能光伏(SPV)电厂的设计与分析

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Renewable energy is a viable alternative to meet growing energy demand of the country. Realizing this fact, Indian government has recently expressed an intention towards achieving 100 GW of solar capacity by 2022; out of which 40% is being expected through decentralized and roof top scale solar projects. One such Photovoltaic (PV) plant of 50 kW capacity installed at the roof top of Saraswati library building of Deenbandhu Chhotu Ram University of Science & Technology has been analyzed for its technical and financial viability. We have also analyzed the mix of technicalities involved in this PV plant. This PV plant is generating more than 5200 kWh/month of electricity and reducing 4070 kg/month of GHG emissions. Further, this plant is installed with govt. subsidy and found that the subsidy amount makes it lucrative by reducing pay back duration to 5.7 years and increasing the IRR to 16.97%. But even without subsidy, the pay back duration comes out to be 10.3 years and IRR equals to 8.22% to make it financially viable. Thus it is observe that if govt continued to provide subsidy up to 30% to such projects for next 2 to 3 years, then it will help to attract the domestic sector to get install more and more PV plant on their rooftop. Further attempt have been made to present a generic framework for providing SPV power system.
机译:可再生能源是满足该国不断增长的能源需求的可行替代方案。意识到这一事实,印度政府最近表示有意在2022年之前达到100 GW的太阳能发电能力。预计其中40%将通过分散式和屋顶式太阳能项目实现。已对Deenbandhu Chhotu Ram科技大学Saraswati图书馆大楼屋顶安装的50千瓦容量的此类光伏(PV)工厂的技术和财务可行性进行了分析。我们还分析了该光伏电站涉及的技术组合。该光伏电站每月发电量超过5200 kWh,每月减少4070公斤温室气体排放。此外,该工厂安装了govt。补贴,并发现通过将投资回收期缩短至5.7年,并将内部收益率提高至16.97%,该补贴金额使之有利可图。但是即使没有补贴,投资回收期仍为10.3年,IRR等于8.22%,使其具有财务可行性。因此可以观察到,如果政府在接下来的2至3年中继续为此类项目提供高达30%的补贴,那么它将有助于吸引国内部门在屋顶上安装越来越多的光伏电站。已经作了进一步的尝试来提出用于提供SPV电源系统的通用框架。

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