太阳能光伏发电对变压器热老化的影响

B. A. Thango, J. Jordaan, A. Nnachi
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引用次数: 3

摘要

在过去的十年中,太阳能光伏发电已经成为南非可再生能源发电的领先先锋之一。太阳能光伏电站部署的可观增长吸引了全球项目开发商、投资者和利益相关者的注意。在此基础上,要保证太阳能光伏电站设备运行符合太阳能光伏环境的要求,促进按需发电,还需要更多的设计工作。升压变压器是一种易受连接逆变器产生的谐波和失真以及非线性负载引起的共振影响的设备。谐波和失真是众所周知的引入额外的损耗,热点温升和减少变压器的使用寿命。热点温度的升高会导致升压变压器油中可燃气体含量异常,从而可能发生过早的故障。这种气体的浓度表明部分放电和过度加热。近年来的研究表明,太阳能光伏电站变压器的设计更加稳健。本文旨在为理解太阳能光伏应用升压变压器中谐波电流的不利影响提供额外的知识。在谐波剖面下检查绕组涡流损耗和结构部分损耗,以计算使用损耗和由此产生的热要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Impact of Solar Photovoltaic Generation on the Thermal Ageing of Transformers
In the last decade, solar photovoltaic energy generation has emerged as one of the leading vanguards of renewable energy source generation in South Africa. The considerable growth in the deployment of solar photovoltaic plants has grabbed the attention of worldwide project developers, investors and stakeholders. In the way indicated, more devised efforts are essential to wield the guarantee that solar photovoltaic plant equipment operate to meet the requirement of solar photovoltaic environment and facilitate the generation of energy as required. One such equipment susceptible to the harmonics and distortion generated by the connected inverters and resonances due to the non-linear loads is the step-up transformer. Harmonics and distortion are well known to introduce additional losses, hotspot temperature rise and reduction of the transformer service life. The rise in hotspot temperature yield abnormal levels of ignitable gases in the step-up transformer oil such that untimely failures may take place. The concentration of this gases suggests partial discharge and excessive heating. Recently reported studies evoke that the designing of solar photovoltaic plant transformers be more robust. This paper intends to contribute additional knowledge towards understanding the adverse effects related to harmonic currents in the step-up transformer for solar photovoltaic application. The winding eddy losses and structural part losses are examined under a harmonic profile to compute the service losses and resultant thermal requirements.
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