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Evaluation of aging and performance of grid-connected photovoltaic system northern Oman: Seven years' experimental study

机译:北阿曼网格连接光伏系统老化和性能评价:七年的实验研究

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摘要

In this study, the aging measurements of a 1.4 kW grid-connected photovoltaic system were analyzed. The system is located at the Solar Energy Laboratory at the College of Engineering, Sohar University, Sohar, Oman. The system variables were monitored and measured for a period of seven years, starting from 1 October 2012 until 30 September 2019, during which the electricity produced to the network was fed. Weather data metrics measurements showed solar irradiation values, ambient temperature, and the PV module temperature were measured for seven years. The performance criteria for the different PV system, which included (the PV module and system efficiency), performance ratio, and capacity factor were measured in addition to the different losses and system productivity. The results showed that the system is exposed to aging, although the amount of its impact is relatively small, as the study was conducted for a seven-year-old, while the effect of aging is more at longer ages. The measured aging caused the system efficiency to decrease by 6.3% and the production rate to 5.88% while the mean daily array capture loss and system loss were 6.95% and 6.13%, respectively, and the capacity factor decreased by 4.91%. Measurements during the seven years showed that the rate of degradation is greater during the summer than the rest of the seasons due to the high radiation intensity which causes high temperatures of the PV units in addition to the high dust density during this season. The results showed that the use of GCPV systems in the Sohar region is very successful in terms of the limited aging of the system and its long-term viability with appropriate efficiency.
机译:在该研究中,分析了1.4 kW电网连接光伏系统的老化测量。该系统位于索汉尔大学工程学院的太阳能实验室,阿曼索萨姆。系统变量被监测和测量为七年,从2012年10月1日开始,直到2019年9月30日,在此期间对网络产生的电力送入。天气数据度量测量显示出太阳照射值,环境温度,并测量光伏模块温度七年。除了不同的损耗和系统生产率之外,还测量了不同PV系统的性能标准,包括(PV模块和系统效率),性能比和容量因子。结果表明,该系统暴露于衰老,虽然其影响的量相对较小,因此研究进行了七岁的血,但老化的效果更长。测量的老化使系统效率降低了6.3%,生产率降至5.88%,而平均每日阵列捕获损失和系统损失分别为6.95%和6.13%,并且容量因数降低了4.91%。七年来的测量表明,由于高辐射强度,在夏季,夏季,夏季的剩余程度是较高的,由于本赛季的高粉尘密度,引起光伏单位的高温。结果表明,在SOHAR区域中使用GCPV系统在系统的有限老化和具有适当效率的长期活力方面非常成功。

著录项

  • 来源
    《Solar Energy》 |2020年第9期|1247-1258|共12页
  • 作者单位

    Sohar Univ POB 44 Sohar Pci 311 Oman|Univ Kebangsaan Malaysia Solar Energy Res Inst Bangi 43600 Selangor Malaysia;

    Univ Technol Baghdad Energy & Renewable Energies Technol Res Ctr Baghdad Iraq;

    Univ Kebangsaan Malaysia Solar Energy Res Inst Bangi 43600 Selangor Malaysia;

    Univ Kebangsaan Malaysia Solar Energy Res Inst Bangi 43600 Selangor Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Grid-connected; Aging evaluation; Photovoltaic; Performance;

    机译:网格连接;老化评估;光伏;性能;

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