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Grid integrated solar photovoltaic system with static compensator

机译:具有静态补偿器的网格集成太阳能光伏系统

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Renewable energy sources are getting more and more widespread mainly due to the fact that they are environmentally friendly. The reduced prices of Photovoltaic (PV) system components and technological developments of power electronics have also motivated the harnessing of renewable energy. The interconnection of renewable energy sources are incorporated using power electronics converters, with the aim of improving power quality at the point of common coupling (PCC). This study presents a STATCOM which is used as: a) a load reactive power compensator, b) an interface unit between the grid and renewable energy source, and c) as an effective method for real power exchange between load, grid and renewable energy source. A controller unit used for the STATCOM based on modified IcosΦ algorithm by which reactive power compensation and power factor correction is done and also real power support is provided by renewable energy source through STATCOM. In this study a solar PV system is designed for 29 KWpand it is integrated with grid using STATCOM to supply partial active power of 50 kW and full reactive power of 30kVAr of load. Results show that the use of active power from solar PV system and reactive power compensation of STATCOM reduces demand of load on the grid, which in turn increase the load capacity of source.
机译:可再生能源越来越越来越普遍,主要是因为它们是环保的。减少光伏(PV)系统组件的价格和电力电子技术的技术发展也有动力利用可再生能源。可再生能源的互连采用电力电子转换器并入,目的是在公共耦合点(PCC)处提高电能质量。本研究介绍了一种用于:a)载荷无功功率补偿器,b)电网和可再生能源之间的接口单元,以及c)作为负载,电网和可再生能源之间的实际功率交换的有效方法。用于基于改进的ICOSφ算法的STATCOM的控制器单元,通过该算法进行了无功补偿和功率因数校正,通过Statcom提供了可再生能源的实际电力支持。在本研究中,Solar PV系统设计为29 kW p 它与使用STATCOM的网格集成,供应50千瓦的部分有源功率和30kvar的30kvar的完全无功功率。结果表明,使用来自太阳能光伏系统的有源电力和Statcom的无功补偿会降低了网格上负载的需求,从而增加了源的负载能力。

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