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Design and feasibility studies of a small scale Grid Connected Solar PV Power Plant

机译:小型电网连接太阳能光伏电站的设计与可行性研究

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The depletion of fossil fuel resources on a worldwide basis has necessitated an urgent search for alternative energy sources to meet up the present day demands. Solar energy is clean, inexhaustible and environment-friendly potential resource among renewable energy options. But neither a standalone solar photovoltaic system nor a wind energy system can provide a continuous supply of energy due to seasonal and periodic variations. Therefore, in order to satisfy the load demand, grid connected energy systems are now becomes promising options that combine solar and conventional energy systems to meet the future energy demand at reduces consumption of fossil fuels. In the present work it is tried to develop a small scale grid connected solar photovoltaic (SPV) system. The details of the grid connected solar photovoltaic system are studied first. Here, in this present work 1 kWp SPV system is considered for system design. Then it is installed on the roof top of our School of Energy Studies Building and successfully connected with the grid. We find that the system is feeding power to the grid successfully. From the performance analysis of the system we found that the power feeding to the grid maximum 814 W at the radiation of around 1003 W/m2 and the overall system efficiencies are varying from 12.3% to 18.42% at different level of solar intensity. We also found the average energy generation from the present system is around 3-4 kWh/day in the last rainy seasons. These results are the evidence of reliability and feasibility of the present system. And it will help to reduce the electricity bill for the consumers who have maximum consumption in day hours i.e. School, College, Office, Commercial buildings, Shops etc. To best of our Knowledge this is the first time such type of small scale grid connected solar photo voltaic (SPV) system was reported.
机译:在全球范围内的化石燃料资源的消耗必然需要紧急寻找替代能源,以满足现今的需求。太阳能是可再生能源选择中的清洁,取之不尽的无穷无尽,无穷无尽的潜在资源。但是,由于季节性和周期性变化,独立的太阳能光伏系统和风能系统也可以提供连续的能量供应。因此,为了满足负载需求,网格连接的能量系统现在成为结合太阳能和传统能源系统的有希望的选择,以满足未来的能量需求,从而减少化石燃料的消耗。在本工作中,试图开发一个小型网格连接的太阳能光伏(SPV)系统。第一次研究了网格连接太阳能光伏系统的细节。这里,在本工作中,考虑了1 kWp SPV系统进行系统设计。然后它安装在我们的能源研究学院的屋顶顶部,并与网格成功连接。我们发现该系统正成功地将电网供电。根据系统的性能分析,我们发现在大约1003W / m 2的辐射辐射到电网最大值814W的供电,并且整体系统效率在不同水平的太阳能下的12.3%至18.42%变化。我们还发现,目前系统的平均能源在最后的雨季中约为3-4千瓦时/天。这些结果是本系统可靠性和可行性的证据。并且它将有助于减少在日间,学校,学院,办公室,商业建筑,商店等中最多消费的消费者的电力账单。尽管我们所知,这是第一次这样的小型电网连接太阳能报道了光伏(SPV)系统。

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