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PERFORMANCE OF A 10MWP GRID-INTEGRATED PV SYSTEM IN SALTY WARM AND HUMID AMBIENCE IN INDIA

机译:印度咸温湿热氛围中的10MWP网格集成光伏系统的性能

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The present paper containing the studies on the behavior of a typical 10 MWp commercial grid integrated photovoltaic (GiPV) power plant in India operating successfully for more than one year. It is one of the plants in the proposed 500 MWp capacity of Gujarat Solar Park in India. The plant was commissioned at the end of 2011 and commercial operation begins at the beginning of 2012. After proper inversion of the generated DC power, it is exporting into the 66 kV transmission line of Gujarat Energy Transmission Corporation (GETCO) through appropriate grid integrating systems. Studies for last one year indicated that the plant performance is the function of some of the sensitive parameters like; i. Incoming solar radiation (Insolation), ii. Ambient temperature profile, iii. Soling density factor iv. Operating window configuration profile of the inversion systems and v. Setting up of appropriate operating hours in the inverting systems. Further more an appreciable improvement in power production was achieved by taking steps on reduction in soiling density factor, lowering of temperature impact, improvement in generation index, improvement of inversion efficiency, and improvement in power evacuation factor with the adoption of proper plant management methodologies. Implementation of all these aspects makes further gain in generation from 2-2.5% more than the targeted generation figure. The above aspects were analyzed critically and methodologies in further improvement in power production are presented in the following sections of the paper.
机译:本文含有关于印度典型10MWP商业网格集成光伏(GIPV)发电厂的行为的研究成功运行一年以上。它是印度古吉拉特太阳能公园拟议500 MWP能力的植物之一。该植物于2011年底委托,商业运营于2012年初开始。经过适当的网格集成系统,它将通过适当的网格整合系统出口到Gujarat能源传输公司(Getco)的66 kV输电线路。最后一年的研究表明,植物性能是一些敏感参数的功能;一世。传入的太阳辐射(Insolation),II。环境温度曲线,III。辅密度因子IV。反转系统的操作窗口配置配置文件和v。在反相系统中设置适当的工作时间。通过采取措施降低污染密度因子,降低温度影响,产生指数的提高,转化效率的提高以及采用适当的工厂管理方法,通过采用更高的植物管理方法来实现发电量的可观改善。所有这些方面的实施进一步增益超过了目标生成数字的2-2.5%。在纸张的以下部分中提出了重大学分析了上述方面,并进一步改善了电力产生的方法。

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